Protein engineering of a thermostable polyol dehydrogenase

Wulf, H; Mallin, H; Bornscheuer, UT

HERO ID

4674222

Reference Type

Journal Article

Year

2012

Language

English

PMID

22883556

HERO ID 4674222
In Press No
Year 2012
Title Protein engineering of a thermostable polyol dehydrogenase
Authors Wulf, H; Mallin, H; Bornscheuer, UT
Journal Enzyme and Microbial Technology
Volume 51
Issue 4
Page Numbers 217-224
Abstract The polyol dehydrogenase PDH-11300 from Deinococcus geothermalis was cloned, functionally expressed in Escherichia coli and biochemically characterized. The enzyme showed the highest activity in the oxidation of xylitol and 1,2-hexanediol and had an optimum temperature of 45 °C. The enzyme exhibited a T⁶⁰₅₀-value of 48.3 °C. The T⁶⁰₅₀ is the temperature where 50% of the initial activity remains after incubation for 1h. In order to elucidate the structural reasons contributing to thermostability, the substrate-binding loop of PDH-11300 was substituted by the loop-region of a homolog enzyme, the galactitol dehydrogenase from Rhodobacter sphaeroides (PDH-158), resulting in a chimeric enzyme (PDH-loop). The substrate scope of this chimera basically represented the average of both wild-type enzymes, but surprisingly the T⁶⁰₅₀ was noticeably increased by 7 °C up to 55.3 °C. Further mutations in the active site led to identification of residues crucial for enzyme activity. The cofactor specificity was successfully altered from NADH to NADPH by an Asp55Asn mutation, which is located at the NAD⁺ binding cleft, without influencing the catalytic properties of the dehydrogenase.
Doi 10.1016/j.enzmictec.2012.06.006
Pmid 22883556
Wosid WOS:000308519600006
Is Certified Translation No
Dupe Override No
Comments Scopus URL: https://www.scopus.com/inward/record.uri?eid=2-s2.0-84864912702&doi=10.1016%2fj.enzmictec.2012.06.006&partnerID=40&md5=4e0bb428fe1731365c0522abb20ead58
Is Public Yes
Language Text English
Keyword Temperature effects; Protein engineering; Xylitol; NADH; Enzymes; dehydrogenase; NADP; Mannitol dehydrogenase (cytochrome); Chimeras; Cofactors; Oxidation; Thermal stability; Mutation; Rhodobacter sphaeroides; Deinococcus geothermalis; Escherichia coli; 2012)
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