Literature DB >> 21332126

Role of chemistry versus substrate binding in recruiting promiscuous enzyme functions.

Olga Khersonsky1, Sergey Malitsky, Ilana Rogachev, Dan S Tawfik.   

Abstract

Two different scenarios for the recruitment of evolutionary starting points and their subsequent divergence to give new enzymes have been described. The coincidental, promiscuous starting activity may regard the same reaction chemistry on a new substrate (substrate ambiguity). Alternatively, substrate binding guides the recruitment of an enzyme whose reaction chemistry differs from that of the newly evolving one (catalytic promiscuity). While substrate ambiguity seems to underlie the divergence of most enzyme families, the relative levels of occurrence of these scenarios remain unknown. Screening the Escherichia coli proteome with a comparative series of xenobiotic substrates, we found that substrate ambiguity was, as anticipated, more frequent than reaction promiscuity. However, for at least one unnatural reaction (phosphonoesterase), a promiscuous enzyme was identified only when the substrate was decorated with the naturally abundant phosphate group. These findings support the prevailing hypothesis of chemistry-driven divergence but also suggest that recognition of familiar substrate motifs plays a role. In the absence of enzymes catalyzing the same chemistry, having a familiar, naturally occurring substrate motif (chemophore) such as phosphate may increase the likelihood of catalytic promiscuity. Chemophore anchoring may also find practical applications in identifying catalysts for unnatural reactions.

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Year:  2011        PMID: 21332126     DOI: 10.1021/bi101763c

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  22 in total

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2.  Kemp Eliminase Activity of Ketosteroid Isomerase.

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Authors:  Margaret E Glasner; Dat P Truong; Benjamin C Morse
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4.  Pyridoxal Reductase, PdxI, Is Critical for Salvage of Pyridoxal in Escherichia coli.

Authors:  Tomokazu Ito; Diana M Downs
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5.  Probing pathways of adaptation with continuous evolution.

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Journal:  Curr Opin Syst Biol       Date:  2019-02-13

6.  Network context and selection in the evolution to enzyme specificity.

Authors:  Hojung Nam; Nathan E Lewis; Joshua A Lerman; Dae-Hee Lee; Roger L Chang; Donghyuk Kim; Bernhard O Palsson
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7.  On the role of physics and evolution in dictating protein structure and function.

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8.  Minimalist de novo Design of Protein Catalysts.

Authors:  Liam R Marshall; Oleksii Zozulia; Zsofia Lengyel-Zhand; Ivan V Korendovych
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9.  Catalytic and substrate promiscuity: distinct multiple chemistries catalysed by the phosphatase domain of receptor protein tyrosine phosphatase.

Authors:  Bharath Srinivasan; Hanna Marks; Sreyoshi Mitra; David M Smalley; Jeffrey Skolnick
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Review 10.  Biological messiness vs. biological genius: Mechanistic aspects and roles of protein promiscuity.

Authors:  William M Atkins
Journal:  J Steroid Biochem Mol Biol       Date:  2014-09-12       Impact factor: 4.292

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