Publications

List of publications

  

Prof. Sandip Bankar

  1. Bankar S., Survase S., Singhal R., Granström T., 2012. Continuous two stage acetone–butanol–ethanol fermentation with integrated solvent removal using Clostridium acetobutylicum B 5313. Bioresource Technology, 106, 110-116.
  2. Bankar S., Survase S., Ojamo H., Granström T., 2013. The two stage immobilized column reactor with an integrated solvent recovery module for   enhanced ABE production. Bioresource Technology, 140, 269-276.
  3. Bankar S., Jurgens G., Survase S., Ojamo H., Granström T., 2014. Enhanced isopropanol–butanol–ethanol (IBE) production in immobilized column reactor using modified Clostridium acetobutylicum DSM79. Fuel, 136, 226-232.
  4. Yamamoto M., Lakovlev M., Bankar S., Tunc M., Heiningen A., 2014. Enzymatic hydrolysis of hardwood and softwood harvest residue fibers released by sulfur dioxide–ethanol–water fractionation. Bioresource Technology, 167, 530-538.
  5. Jadhav S., Bankar S., Granström T., Ojamo H., Singhal R., Survase S., 2014. Enhanced stability of alcohol dehydrogenase by non-covalent interaction with polysaccharides. Applied Microbiology and Biotechnology, 98, 6307–6316.
  6. Harde S., Bankar S., Ojamo H., Granström T., Singhal R., Survase S., 2014. Continuous lignocellulosic ethanol production using Coleus forskohlii root hydrolysate. Fuel, 126, 77-84
  7. Bankar S., Jurgens G., Survase S., Ojamo H., Granström T., 2015. Genetic engineering of Clostridium acetobutylicum to enhance isopropanol-butanol-ethanol production with an integrated DNA-technology approach. Renewable Energy, 83, 1076-1083.
  8. Jadhav S., Harde S., Bankar S., Granström T., Ojamo H.,  Singhal R., Survase S., 2014. A green process for the production of butanol from butyraldehyde using alcohol dehydrogenase: process details. RCS Advances, 4, 14597-14602.  
  9. Jadhav S., Bankar S., Granström T., Ojamo H., Singhal R., Survase S., 2015. Interaction of carbohydrates with alcohol dehydrogenase: Effect on enzyme activity. Journal of Bioscience and Bioengineering, 20, 1-5.
  10. Harde S., Jadhav S., Bankar S., Ojamo H., Granström T., Singhal R., Survase S., 2016. Acetone-butanol-ethanol (ABE) fermentation using the root hydrolysate after extraction   of forskolin from Coleus forskohlii. Renewable Energy, 86, 594-601.
  11. Khedkar M., Nimbalkar P., Gaikwad S., Chavan P., Bankar S., 2017. Sustainable biobutanol production from pineapple waste by using Clostridium acetobutylicum B 527: drying kinetics study. Bioresource Technology, 225, 359-366.

 

 

Tero Eerikäinen

  1. EERIKÄINEN, T. 1986. Brewer's spent grain in high dietary fiber cereal products. M.Sc. thesis. Helsinki Univ. of Technology. (In Finnish).
  2. EERIKÄINEN, T. 1989. Fuzzy modeling and control in HTST‑ extrusion cooking. Licentiate’s thesis. Helsinki University of Technology, 9th of May 1989.
  3. LINKO P., UEMURA K., ZHU Y.-H. and EERIKÄINEN T., 1992. Application of neural network models in fuzzy extrusion control. Trans. IChemE Vol. 70, Part C, 131-137.
  4. EERIKÄINEN, T., LINKO, S., LINKO, P., SIIMES, T. ja ZHU, Y.-H., 1993. Tekoälyn mahdollisuudet elintarviketeknologiassa [The potential of artificial intelligence in food technology]. Kehittyvä Elintarvike 4(5) (1993) 8-12.
  5. EERIKÄINEN, T., 1993. Artificial intelligence in extrusion cooking process modelling and control. Doctor of Technology Thesis. Helsinki University of Technology: Technical Biochemistry Report 2/1993.
  6. EERIKÄINEN, T., LINKO, P., LINKO, S., SIIMES, T. and ZHU, Y.-H., 1993. Fuzzy logic and neural network applications in food science and technology, Trends in Food Science and Technol., 4 (8), 237-242.
  7. EERIKÄINEN, T., ZHU, Y.-H. and LINKO P., 1994. Neural Networks in Extrusion Process Identification and Control, Food Control, 5(2), 111-119.
  8. LINKO, S., ZHU, Y.-H., EERIKÄINEN, T., SIIMES, T. and LINKO, P., 1994. Artificial intelligence in bioprocess modelling, estimation and control. Developments in Food Science 36, 143-158.
  9. MYLLYMÄKI, O., EERIKÄINEN, T., SUORTTI, T., FORSSELL, P., LINKO, P. and POUTANEN, K., 1997. Depolymerization of barley starch during extrusion in water-glycerol mixtures. Lebensmittel-Wissenschaft & Technologie 30 (4), 351-358.
  10. EERIKÄINEN, T. and LEISOLA, M., 1998. Book-review: Snape, J.B., Dunn, I.J., Ingham, J. and Prenosil, J.E. Dynamics of Environmental Bioprocesses. Kemia-Kemi 25(8):724.
  11. LEISOLA, M., EERIKÄINEN, T. and ARISTIDOU, A. 1999. Bioprosessitekniikka, tie koeputkesta tuotteeksi, Kemia-Kemi 26(8):629-632.
  12. PASTINEN, O., JOKELA, J., EERIKÄINEN, T., SCHWABE, T. and LEISOLA, M., 2000. Cross-linked glucose isomerase crystals as a liquid chromatographic separation material,. Enzyme Microb. Tech. 26, 550-558.
  13. KIVIHARJU, K., LEISOLA, M. and EERIKÄINEN, T., 2004. Optimization of Streptomyces peucetius var. caesius N47 cultivation and -rhodomycinone production using experimental designs and response surface methods, J. Ind. Microbiol. Biot. 31, 475-481.
  14. CESCUTTI, P., KALLIOINEN, A., IMPALLOMENI, G., TOFFANIN, R., POLLESELLO, P., LEISOLA, M. and EERIKÄINEN, T., 2005. Structure of the exopolysaccharide produced by Enterobacter amnigenus, Carbohyd. Res. 340, 439-447.
  15. KIVIHARJU, K., LEISOLA, M. and EERIKÄINEN, T., 2005. Optimization of a Bifidobacterium longum ATCC 15707 production process, J. Biotechnol., 117, 299-308.
  16. KIVIHARJU, K., SALONEN, K., LEISOLA, M., and EERIKÄINEN, T., 2006. Modeling and simulation of Streptomyces peucetius var. caesius N47 cultivation and ε-rhodomycinone production with kinetic equations and neural networks, J. Biotechnol. 126(3), 365-373.
  17. KIVIHARJU, K., MOILANEN, U., LEISOLA, M., and EERIKÄINEN, T., 2007. A chemostat study of Streptomyces peucetius var. caesius N47, Applied Microbiology and Biotechnology 73:1267–1274.
  18. KIVIHARJU, K., SALONEN, K., LEISOLA, M. and EERIKÄINEN, T., 2007. Kinetics of Bifidobacterium longum ATCC 15707 growth. Process Biochemistry. Vol. 42, nro 7, pp. 1140-1145.
  19. KIVIHARJU, K., SALONEN, K., MOILANEN, U., MESKANEN, E., LEISOLA, M. and EERIKÄINEN, T. 2007.  On-line biomass measurements in bioreactor cultivations: comparison study of two on-line probes. Journal of Industrial Microbiology & Biotechnology, Vol. 34, nro 8, pp. 561-566.
  20. KIVIHARJU, K., SALONEN, K., MOILANEN, U. and EERIKÄINEN, T., 2008. Biomass measurement on-line ­ the performance of in situ measurements and software sensors, Journal of Industrial Microbiology & Biotechnology,  35(7),  657-665.
  21. IGNATOVA, M., LYUBENOVA, V., EERIKÄINEN, T., SALONEN, K., KIVIHARJU, K., 2008. Software sensor of substrate kinetics and its application for control of -amylase production by Bacillus subtilis, Compt. rend. Acad. bulg. Sci., 61(11), 1449-1458.
  22. SALONEN, K., LEISOLA, M. and EERIKÄINEN, T., 2009. Multipoint Titration Method with a Variable Dose Implementation for Anaerobic Digestion Monitoring, Water Sci. Technol., 59(12), 2395-2403.
  23. EERIKÄINEN, T., 2009. SKS:n Biotekniikan jaosto 30 vuotta. Kemia-Kemi , 5/2009, 87.
  24. LYUBENOVA, V., IGNATOVA, M., SALONEN, K., KIVIHARJU, K. and EERIKÄINEN, T., 2011. Control of -amylase production by Bacillus subtilis, Bioprocess. Biosyst. Eng. 34(3):367-74.
  25. WALLENIUS, J., UUKSULAINEN, T., SALONEN, K., RAUTIO and EERIKÄINEN, T., 2011. The effect of temperature and pH gradients on Lactobacillus rhamnosus gene expression of stress-related genes, Bioprocess. Biosyst. Eng. 34( 9), 1169-1176.
  26. WALLENIUS, J., BARTH, D. and EERIKÄINEN, T., 2012. The effects of pH oscillation on  Lactobacillus rhamnosus batch cultivation. Appl Microbiol Biotechnol, 95, 1265–1273.
  27. Dahlbacka, J., Kiviharju, K., Eerikäinen, T. and Fagervik, K., 2013. Monitoring of Streptomyces peucetius cultivations using FT-IR/ATR spectroscopy and quantitative models based on library type data, Biotechnology Letters 35( 3), 337-343.
  28. Wallenius, J, Viikilä, M., Survase, S., Ojamo, H. and Eerikäinen, T., 2013. Constraint-based genome-scale metabolic modeling of Clostridium acetobutylicum behavior in an immobilized column, Bioresource Technology,142, 603-610.
  29. Moilanen, U., Winquist, E., Mattila, T., Hatakka, A. and Eerikäinen, T., 2015. Production of manganese peroxidase and laccase in a solid-state bioreactor and modeling of enzyme production kinetics, Bioprocess Biosyst Eng, 38(1), 57-68.
  30. Wallenius, J., Pahimanolis, N., Zoppe, J., Kilpeläinen, P., Master, E., Ilvesniemi, H., Seppälä, J., Eerikäinen, T. and Ojamo, H., 2015. Continuous propionic acid production with Propionibacterium acidipropionici immobilized in a novel xylan hydrogel matrix, Bioresource Technology, 197, 1-6.
  31. BOZAUDI, M. , EERIKÄINEN, T., TURUNEN, O., GHELAWI, M. and SHAMEHK, S., 2015. Effect of gamma irradiation and heat treatment on the artificial contamination of maize grains by Aspergillus flavus Link NRRL 5906, Radiation Physics and Chemistry  (submitted).
  32. RÄSÄNEN, M., EERIKÄINEN, T. and OJAMO, H., 2016. Characterization and hydrodynamics of a novel helix-airlift reactor, Chem. Eng. Process.: Process Intensif, 108,44-57.
  33. Wallenius, J., Maaheimo, H. and Eerikäinen, T., 2016. Carbon 13-Metabolic Flux Analysis derived constraint-based metabolic modelling of Clostridium acetobutylicum in stressed chemostat conditions, Bioresource Technology, 219, 378–386.

     

    Ossi Turunen

  1. Pakkanen, R., Hedman, K., Turunen, O., Wahlström, T. and Vaheri, A. (1987) Microvillus-specific Mr 75 000 Plasma Membrane Protein of Human Choriocarcinoma Cells. J. Histochem. Cytochem. 35: 809-816. (58)
  2. Pakkanen, R., von Bonsdorff, C-H., Turunen, O., Wahlström, T. and Vaheri, A. (1988) Redistribution of Mr 75 000 plasma membrane protein, cytovillin, into newly formed microvilli in herpes simplex and Semliki Forest virus infected human embryonal fibroblasts. Eur. J. Cell Biol. 46: 435-443. (28)
  3. Turunen, O., Winqvist, R., Pakkanen, R., Grzeschik, K.-H., Wahlström, T. and Vaheri, A. (1989) Cytovillin, a microvillar Mr 75 000 protein: cDNA sequence, prokaryotic expression, and chromosomal localization. J. Biol. Chem. 264: 16727-16732. (95)
  4. Algrain, M., Turunen, O., Vaheri, A., Louvard, D. and Arpin, M. (1993) Ezrin contains cytoskeleton and membrane binding domains accounting for its proposed role as a membrane-cytoskeletal linker. J. Cell Biol. 120: 129-139. (369)
  5. Turunen, O., Wahlström, T. and Vaheri, A. (1994) Ezrin has a COOH-terminal actin-binding site that is conserved in the ezrin protein family. J. Cell Biol. 126: 1445-1453. (320)
  6. Böhling, T., Turunen, O., Jääskeläinen, J., Carpén, O., Sainio, M., Wahlström. T., Vaheri, A. and Haltia, M. (1996) Ezrin exzpression in stromal cells of capillary hemagioblastoma - an immunohistochemical survey of brain tumors. Am. J. Pathol.  148: 367-373. (73)
  7. Helander, T.S., Carpén, O., Turunen, O., Kovanen, P.E., Vaheri, A. and Timonen, T. (1996) ICAM-2 redistributed by ezrin as a target for killer cells. Nature 382: 265-268. (202)
  8. Sainio, M., Zhao, F., Heiska, L., Turunen, O., den Bakker, M., Zwarthoff, E., Lutchman, M., Rouleau, G. A., Jääskeläinen, J., Vaheri, A. and Carpén, O. (1997) Neurofibromatosis 2 tumor suppressor colocalizes with ezrin and CD44 and associates with actin-containing cytoskeleton. J. Cell Sci. 110: 2249-2260. (125)
  9. Vaheri, A., Carpén, O., Heiska, L., Helander, T., Jääskeläinen, J., Majander-Nordenswan, P., Sainio, M., Timonen, T. and Turunen, O. (1997) The ezrin protein family as membrane-cytoskeleton organisers and disease associations. Curr. Opin. Cell Biol. 9: 659-666. (147)
  10. Turunen, O., Sainio, M., Jääskeläinen, J., Carpén, O. and Vaheri, A. (1998) Structure-function relationships in the ezrin family and the effect of tumor-associated point mutations in neurofibromatosis 2 protein. BBA-Protein Struct. Mol. Enzymol. 1387: 1-16. (38)
  11. Majander-Nordenswan, P., Sainio, M., Turunen, O., Jääskeläinen, J., Carpén, O., Kere, J. and Vaheri, A. (1998) Genomic structure of the human ezrin gene. Human Genetics 103: 662-665. (8)
  12. Bennett, Jr., R., Järvelä, T., Engelhardt, P., Kostamovaara, L., Sparks, P., Carpén, O., Turunen, O. and Vaheri, A. (2001) Mucin MUC1 is seen in cell surface protrusions together with ezrin in immunoelectron tomography and is concentrated at tips of filopodial protrusions in MCF-7 breast carcinoma cells. J. Histochem. Cytochem. 49: 67-77. (6)
  13. Jänis, J., Rouvinen, J., Leisola, M., Turunen, O. and Vainiotalo, P. (2001) Thermostability of endo-1,4--xylanase II from Trichoderma reesei studied by electrospray ionization Fourier-transform ion cyclotron resonance MS, hydrogen/deuterium-exchange reactions and dynamic light scattering. Biochem J. 356: 453-60. (23)
  14. Turunen, O., Etuaho, K., Fenel, F., Vehmaanperä, J., Wu, X., Rouvinen, J., and Leisola, M. (2001) A combination of weakly stabilizing mutations with a disulfide-bridge in the -helix region of Trichoderma reesei endo-1,4--xylanase II increases the thermal stability through synergism. J. Biotechnol. 88: 37-46. (68)
  15. Turunen, O., Vuorio, M., Fenel, F. and Leisola, M. (2002) Engineering of multiple arginines into the Ser/Thr surface of Trichoderma reesei endo-1,4--xylanase II increases the thermotolerance and shifts the pH optimum towards alkaline pH. Protein Eng. 15: 141-145. (80)
  16. Hakulinen, N., Turunen, O., Jänis, J., Leisola, M. and Rouvinen, J. (2003) Three-dimensional Structures of Thermophilic -1,4-Xylanases from Chaetomium thermophilum and Nonomuraea flexuosa: Comparison of Twelve Xylanases in Relation to Their Thermal Stability. Eur. J. Biochem. 270: 1399-1412. (100)
  17. Xiong, H., von Weymarn, N., Leisola, M. and Turunen, O. (2004) Influence of pH on the production of xylanases by Trichoderma reesei Rut C-30. Process Biochem. 39: 729-733. (25)
  18. Fenel, F., Leisola, M. and Turunen, O. (2004) A de novo designed N-terminal disulfide bridge stabilizes the Trichoderma reesei endo-1,4--xylanase II. J. Biotechnol. 108: 137-143. (50)
  19. Xiong, H., Turunen, O., Pastinen, O., Leisola, M. and von Weymarn, N. (2004) Improved xylanase production by Trichoderma reesei grown on L-arabinose and lactose or D-glucose mixtures. Appl. Microb. Biotechnol. 64: 353-358. (16)
  20. Xiong, H., Nyyssölä, A., Jänis, J., Santa, H., Pastinen, O., von Weymarn, N., Leisola, M. and Turunen, O. (2004) Characterization of the xylanase produced by submerged cultivation of Thermomyces lanuginosus DSM 10635. Enzyme Microb. Technol. 35: 93-99. (29)
  21. Jänis, J., Turunen, O., Leisola, M., Derrick, P., Rouvinen, J. and Vainiotalo, P. (2004) Characterization of Mutant Xylanases Using Fourier Transform Ion Cyclotron Resonance Mass Spectrometry: Stabilizing Contributions of Disulfide Bridges and N-terminal Extensions. Biochemistry 43: 9556-9566. (20)
  22. Xiong, H., Fenel, F., Leisola, M. and Turunen, O. (2004) Engineering the thermostability of Trichoderma reesei endo--1,4-xylanase II by combination of disulphide bridges. Extremophiles 8: 393-400. (44)
  23. Karimäki, J., Parkkinen, T., Santa, H., Pastinen, O., Leisola, M., Rouvinen, J. and Turunen, O. (2004) Engineering the substrate specificity of xylose isomerase. Protein Eng. Des. Sel. 17: 861–869. (23)
  24. Santa, H., Kammonen, J., Karimäki, J., Leisola, M. and Turunen, O. (2005) Stochastic boundary molecular dynamics simulation of L-ribose in the active site of Actinoplanes missouriensis xylose isomerase and its Val135Asn mutant with improved reaction rate. BBA – Proteins & Proteomics 1749:65-73. (13)
  25. Xiong, H., von Weymarn, N., Turunen, O., Leisola, M. and Pastinen, O. (2005) Xylanase production by Trichoderma reesei Rut C-30 grown on L-arabinose-rich plant hydrolysates. Bioresour. Technol. 96: 753-759. (30)
  26. Leisola, M. and Turunen, O. (2007) Protein engineering: opportunities and challenges. Appl. Microbiol. Biotechnol. 75: 1225-1232. (37)
  27. Nykänen, A., Nuopponen, M., Laukkanen, A., Hirvonen, S-P., Rytelä, M., Turunen, O., Tenhu, H., Mezzenga, R., Ikkala, O. and Ruokolainen, J. (2007) Phase Behavior and Temperature-Responsive Molecular Filters Based on Self-Assembly of Polystyrene-block-poly(N-isopropylacrylamide)-block-polystyrene. Macromolecules 40: 5827-5834. (101)
  28. Jänis, J., Rouvinen, J., Vainiotalo, P., Turunen, O. and Shnyrov VL. (2008) Irreversible thermal denaturation of Trichoderma reesei endo-1,4-beta-xylanase II and its three disulfide mutants characterized by differential scanning calorimetry. Int. J. Biol. Macromol. 42: 75-80. (5)
  29. Turunen, O., Seelke, R. and Macosko, J. (2009) In silico evidence for functional specialization after genome duplication in yeast. FEMS Yeast Res. 9: 16-31. (10)
  30. Maksimainen, M., Timoharju, T., Kallio, J.M., Hakulinen, N., Turunen, O. and Rouvinen, J. (2009) Crystallization and preliminary diffraction analysis of a b-galactosidase from Trichoderma reesei. Acta Cryst. F65, 767–769. (3)
  31. Anbarasan, S., Jänis, J., Paloheimo, M. Laitaoja, M. Vuolanto, M., Karimäki, J., Vainiotalo, P., Leisola, M. and Turunen, O. (2010) Effect of pH, glycosylation and additional domains on the thermostability of family 10 xylanase of Thermopolyspora flexuosa. Appl. Environ. Microbiol. 76: 356-360. (22)
  32. Orczán, K., Turunen, O., Merényi, Z., Rudnóy, S. Bratek, Z., & Shamekh, S. (2010) Tuber foetidum found in Finland. Mycotaxon 114: 127-133. (3)
  33. Maksimainen, M., Hakulinen, N., Kallio, J.M., Timoharju, T., Turunen, O. and Rouvinen, J. (2011) Crystal structures of Trichoderma reesei β-galactosidase reveal conformational changes in the active site. J. Struct. Biol. 174:156-163. (24)
  34. Usvalampi. A., Turunen, O., Valjakka, J., Pastinen, O., Leisola, M. and Nyyssölä, A. (2012) Production of L-xylose from L-xylulose using Escherichia coli L-fucose isomerase. Enzyme Microb. Technol. 50: 71-76. (4)
  35. Puentes Rodriguez, Y, Puhakka-Tarvainen, H, Pastinen, O, Siika-aho, M, Alvila, L, Turunen, O, Morales, L and Pappinen, A. (2012) Susceptibility of pre-treated wood sections of Norway spruce (Picea abies) clones to enzymatic hydrolysis. Can. J. For. Res. 42: 38-46. (1)
  36. Wang, Y., Fu, Z., Huang, H., Yao, B., Zhang, H., Xiong, H., and Turunen, O. (2012) Improved thermal performance of Thermomyces lanuginosus GH11 xylanase by engineering of an N-terminal disulfide bridge. Bioresour. Technol. 112: 275–279. (35)
  37. Salonen, N.J., Nyyssölä, A., Salonen, K. and Turunen, O. (2012) Bifidobacterium longum L-arabinose isomerase - overexpression in Lactococcus lactis, purification and characterization. Appl. Biochem. Biotechnol.  168: 392-405. (8)
  38. Li, H., Murtomäki, L., Leisola, M. and Turunen, O. (2012) The effect of thermostabilizing mutations on pressure stability of Trichoderma reesei GH11 xylanase. Protein Eng. Des. Sel. 25: 821-826. (5)
  39. Li, S., Wang, Y., Fu, Z., Wang, W., Turunen, O., Xiong, H. (2013) Expression of Thermomyces lanuginosus xylanase 1YNA and its disulphide bridge mutant in Pichia Pastoris. China Biotechnol. 33: 74-79. (1)
  40. Maksimainen, M., Lampio, A., Mertanen, M., Turunen, O. and Rouvinen, J. (2013) The crystal structure of acidic beta-galactosidase from Aspergillus oryzae. Int. J. Biol.Macromol.60: 109-115. (13)
  41. Li, H., Kankaanpää, A., Hummel, M., Sixta, H., Xiong, H. and Turunen, O. (2013) Thermostabilization of extremophilic Dictyoglomus thermophilum GH11 xylanase by an N-terminal disulphide bridge and the effect of ionic liquid [emim]OAc on the enzymatic performance. Enzyme Microb. Technol. 53: 414-419. (16)
  42. Shamekh, S., Grebenc, T., Leisola, M. and Turunen, O. (2014) The cultivation of oak seedlings inoculated with Tuber aestivum Vittad. in the boreal region of Finland. Mycol. Progress 13: 373-380. (1)
  43. Wang, K., Luo, H., Tian, J., Turunen, O., Huang, H., Shi, P., Hua, H., Wang, C., Wang, S. and Yao, B. (2014) Thermostablility improvement of a Streptomyces xylanase by introducing proline and glutamic acid residues. Appl. Environ. Microbiol. 80: 2158-2165. (21)
  44. Chawachart, N., Anbarasan, S., Turunen, S., Li, H., Khanongnuch, C., Hummel, M., Sixta, H., Granström, T., Lumyong, S. and Turunen, O. (2014) Thermal behaviour and tolerance to ionic liquid [emim]OAc in GH10 xylanase from Thermoascus aurantiacus SL16W. Extremophiles 18: 1023-1034. (3)
  45. Wang, W., Mai-Gisondi, G., Stogios, P., Kaur, A., Xu, X., Cui, H., Turunen, O., Savchenko, A., Master, E. (2014) Elucidation of the Molecular Basis for Arabinoxylan-Debranching Activity of a Thermostable Family GH62 alpha-L-Arabinofuranosidase from Streptomyces thermoviolaceus. Appl. Environ. Microbiol. 80: 5317-5329. (5)
  46. Li, H., Voutilainen, S., Ojamo, H. and Turunen, O. (2015) Stability and activity of Dictyoglomus thermophilum GH11 xylanase and its disulphide mutant at high pressure and temperature. Enzyme Microb. Technol.70: 66-71. (3)
  47. Li, H. and Turunen, O. (2015) Effect of acidic amino acids engineered into the active site cleft of Thermopolyspora flexuosa GH11 xylanase. Biotechnol. Appl. Biochem. 62: 433-440. (1)
  48. Anbarasan, S., Timoharju, T., Barthomeuf, J., Rouvinen, J., Leisola, M. and Turunen, O. (2015) Effect of active site mutation on pH activity and transglycosylation of Sulfolobus acidocaldarius beta-glycosidase.­ J. Mol. Catal. B: Enzym. 118: 62-69. (2)
  49. Mai-Gisondi, G., Turunen, O., Pastinen, O. and Master, E.R. (2015) Enhancement of acetyl xylan esterase activity on cellulose acetate through fusion to a family 3 cellulose binding module. Enzyme Microb. Technol. 79-80: 27-33. (6)
  50. Tu, T., Meng, K., Luo, H., Turunen, O., Zhang, L., Cheng, Y., Su, X., Ma, R., Shi, P., Wang, Y., Yang, P. and Yao B. (2015) New insights into the role of T3 loop in determining catalytic efficiency of GH28 endo-polygalacturonases. PLoS One. 10 (9):e0135413. (3)
  51. Özgün, G., Karagüler, N.G., Turunen, O., Turner, N.J. and Binay, B. (2015) Characterization of a new acidic NAD+-dependent formate dehydrogenase from thermophilic fungus Chatemium thermophilum. J. Mol. Catal. B: Enzym. 122: 212-217. (1)
  52. Kuittinen, S., Puentes Rodriguez, Y., Yang, M., Keinänen, M., Pastinen, O., Siika-aho, M., Turunen, O. and Pappinen, A. (2016) Effect of microwave-assisted pre-treatment conditions on hemicellulose conversion and enzymatic hydrolysis of Norway spruce. BioEnerg. Res. 9: 344-354.
  53. Hämäläinen, J., Granström, T., Mollerup, F., Wang, Y., Xiong, H. and Turunen, O. (2016) Effect of enzymatic high temperature prehydrolysis on the subsequent cellulose hydrolysis of steam-pretreated spruce in high solids concentration. J. Chem. Technol. Biotechnol. 91: 1844-1852. (1)
  54. Roselli, A., Asikainen, S., Stepan, A., Monshizadeh, A., von Weymarn, N., Kovasin, K., Wang, Y., Xiong, H., Turunen, O., Michael Hummel and Herbert Sixta. (2016) Comparison of pulp species in IONCELL-P: selective hemicellulose extraction method with ionic liquids. Holzforschung 70: 291-296. (4)
  55. Yu, T., Wang, Y., Anbarasan, S., Telli, K., Aslan, A., Su, Z., Zhou, Y., Zhang, L., Iivonen, P., Havukainen, S., Mentunen, T., Hummel, M., Sixta, H., Binay, B., Turunen, O. and Xiong, H. (2016) Hyperthermostable Thermotoga maritima xylanase XYN10B shows high activity at high temperatures in the presence of biomass-dissolving hydrophilic ionic liquids. Extremophiles 20: 515–524.
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