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101. Schrewe M, Julsing MK, Bühler B, Schmid A (2013) Chem. Soc. Rev. 42: 6346.
102. Willrodt C, Karande R, Schmid A, Julsing MK (2015) Corr. Opin. Biotechnol. 35: 52.
103. Sun J, Alper HS (2014) J. Ind. Microbiol. Biotechnol. 42: 423.
104. Porro D, Branduardi P, Sauer M, Mattanovich D (2014) Curr. Opin. Biotechnol. 30: 101.
105. Jones JA, Toparlak O ¨ D, Koffas MA (2015) Curr. Opin. Biotechnol. 33: 52.
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108. Cooke R, Kuntz ID (1974) Ann. Rev. Biophys. Bioeng. 3: 95
109. Ahern TJ, Klibanov AM (1985) Science 228: 1280
110. Adams MWW, Kelly RM (1998) Trends Biotechnol. 16: 329
111. Mozhaev VV, Martinek K (1984) Enzyme Microb. Technol. 6: 50
112. Jencks WP (1969) Catalysis in Chemistry and Enzymology. McGraw-Hill, New York
113. Fersht A (1985) Enzyme Structure and Mechanism, 2nd edn. Freeman, New York
114. Walsh C (ed) (1979) Enzymatic Reaction Mechanism. Freeman, San Francisco
115. Fischer E (1894) Ber. dtsch. chem. Ges. 27: 2985
116. Lichtenthaler FW (2003) Angew. Chem., Int. Ed. 33: 2364
117. Koshland DE (1958) Proc. Natl. Acad. Sci. USA 44: 98
118. Koshland DE, Neet KE (1968) Ann. Rev. Biochem. 37: 359
119. Gerstein M, Lesk AM, Chotia C (1994) Biochemistry 33: 6739
120. Dewar MJS (1986) Enzyme 36: 8
121. Lipscomb WN (1982) Acc. Chem. Res. 15: 232
122. Warshel A, Aqvist J, Creighton S (1989) Proc. Natl. Acad. Sci. USA 86: 5820
123. Page M I (1977) Angew. Chem. 89: 456
124. Ottosson J, Rotticci-Mulder JC, Rotticci D, Hult K (2001) Protein Sci. 10: 1769
125. Lipscomb WN (1982) Acc. Chem. Res. 15: 232
126. Ottosson J, Fransson L, Hult K (2002) Protein Sci. 11: 1462
127. Johnson LN (1984) Inclusion Compds. 3: 509
128. Warshel A, Sharma PK, Kato M, Xiang Y, Liu H, Olsson MHM (2006) Chem. Rev. 106:
3210
129. Garcia-Viloca M, Gao J, Karplus M, Truhlar DG (2004) Science 303: 186
130. Masgrau L, Roujeinikova A, Johanissen LO, Hothi P, Basran J, Ranaghan KE, Mulholland
AJ, Sutcliffe MJ, Scrutton NS, Leys D (2006) Science 312: 237
131. Ogston AG (1948) Nature 162: 963
132. Jones JB (1976) Biochemical Systems in Organic Chemistry: Concepts, Principles and
Opportunities. In: Jones JB, Sih CJ, Perlman D (eds) Applications of Biochemical Systems
in Organic Chemistry, part I. Wiley, New York, pp 1–46
133. Kielbasinski P, Goralczyk P, Mikolajczyk M, Wieczorek MW, Majzner WR (1998) Tetrahedron: Asymmetry 9: 2641
134. Cipiciani A, Fringuelli F, Mancini V, Piermatti O, Scappini AM, Ruzziconi R (1997)
Tetrahedron 53: 11853
135. Eyring H (1935) J. Chem. Phys. 3: 107
References
29
In: Morrison JD, Scott JW (eds) Asymmetric Synthesis. Academic Press, New York,
vol 4, pp 1–226
93. Margolin AL (1993) Enzyme Microb. Technol. 15: 266
94. Mugford P, Wagner U, Jiang Y, Faber K, Kazlauskas R (2008) Angew. Chem. Int. Ed. 47:
8782
95. Schuster M, Aaviksaar A, Jakubke HD (1990) Tetrahedron 46: 8093
96. Yeh Y, Feeney RE (1996) Chem. Rev. 96: 601
97. Phillips RS (1996) Trends Biotechnol. 14: 13
98. Li C-J (ed.) (2010) Handbook of Green Chemistry, vol. 5, Wiley VCH, Weinheim.
99. Klibanov AM (1990) Acc. Chem. Res. 23: 114
100. Paul CE, Hollmann F (2016) Appl. Microbiol. Biotechnol. 100: 4773.
101. Schrewe M, Julsing MK, Bühler B, Schmid A (2013) Chem. Soc. Rev. 42: 6346.
102. Willrodt C, Karande R, Schmid A, Julsing MK (2015) Corr. Opin. Biotechnol. 35: 52.
103. Sun J, Alper HS (2014) J. Ind. Microbiol. Biotechnol. 42: 423.
104. Porro D, Branduardi P, Sauer M, Mattanovich D (2014) Curr. Opin. Biotechnol. 30: 101.
105. Jones JA, Toparlak O ¨ D, Koffas MA (2015) Curr. Opin. Biotechnol. 33: 52.
106. Paddon CJ, Keasling JD (2014) Nat. Rev. Microbiol. 12: 355.
107. Anfinsen CB (1973) Science 181: 223
108. Cooke R, Kuntz ID (1974) Ann. Rev. Biophys. Bioeng. 3: 95
109. Ahern TJ, Klibanov AM (1985) Science 228: 1280
110. Adams MWW, Kelly RM (1998) Trends Biotechnol. 16: 329
111. Mozhaev VV, Martinek K (1984) Enzyme Microb. Technol. 6: 50
112. Jencks WP (1969) Catalysis in Chemistry and Enzymology. McGraw-Hill, New York
113. Fersht A (1985) Enzyme Structure and Mechanism, 2nd edn. Freeman, New York
114. Walsh C (ed) (1979) Enzymatic Reaction Mechanism. Freeman, San Francisco
115. Fischer E (1894) Ber. dtsch. chem. Ges. 27: 2985
116. Lichtenthaler FW (2003) Angew. Chem., Int. Ed. 33: 2364
117. Koshland DE (1958) Proc. Natl. Acad. Sci. USA 44: 98
118. Koshland DE, Neet KE (1968) Ann. Rev. Biochem. 37: 359
119. Gerstein M, Lesk AM, Chotia C (1994) Biochemistry 33: 6739
120. Dewar MJS (1986) Enzyme 36: 8
121. Lipscomb WN (1982) Acc. Chem. Res. 15: 232
122. Warshel A, Aqvist J, Creighton S (1989) Proc. Natl. Acad. Sci. USA 86: 5820
123. Page M I (1977) Angew. Chem. 89: 456
124. Ottosson J, Rotticci-Mulder JC, Rotticci D, Hult K (2001) Protein Sci. 10: 1769
125. Lipscomb WN (1982) Acc. Chem. Res. 15: 232
126. Ottosson J, Fransson L, Hult K (2002) Protein Sci. 11: 1462
127. Johnson LN (1984) Inclusion Compds. 3: 509
128. Warshel A, Sharma PK, Kato M, Xiang Y, Liu H, Olsson MHM (2006) Chem. Rev. 106:
3210
129. Garcia-Viloca M, Gao J, Karplus M, Truhlar DG (2004) Science 303: 186
130. Masgrau L, Roujeinikova A, Johanissen LO, Hothi P, Basran J, Ranaghan KE, Mulholland
AJ, Sutcliffe MJ, Scrutton NS, Leys D (2006) Science 312: 237
131. Ogston AG (1948) Nature 162: 963
132. Jones JB (1976) Biochemical Systems in Organic Chemistry: Concepts, Principles and
Opportunities. In: Jones JB, Sih CJ, Perlman D (eds) Applications of Biochemical Systems
in Organic Chemistry, part I. Wiley, New York, pp 1–46
133. Kielbasinski P, Goralczyk P, Mikolajczyk M, Wieczorek MW, Majzner WR (1998) Tetrahedron: Asymmetry 9: 2641
134. Cipiciani A, Fringuelli F, Mancini V, Piermatti O, Scappini AM, Ruzziconi R (1997)
Tetrahedron 53: 11853
135. Eyring H (1935) J. Chem. Phys. 3: 107
References
29
