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首页> 外文期刊>Archives of Biochemistry and Biophysics >Probing the affinity and specificity of yeast alcohol dehydrogenase I for coenzymes.
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Probing the affinity and specificity of yeast alcohol dehydrogenase I for coenzymes.

机译:探索酵母醇脱氢酶I对辅酶的亲和力和特异性。

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Yeast (Saccharomyces cerevisiae) alcohol dehydrogenase I (SceADH) binds NAD+ and NADH less tightly and turns over substrates more rapidly than does horse (Equus caballus) liver alcohol dehydrogenase E isoenzyme (EcaADH), and neither enzyme uses NADP efficiently. Amino acid residues in the proposed adenylate binding pocket of SceADH were substituted in attempts to improve affinity for coenzymes or reactivity with NADP. Substitutions in SceADH (Gly202Ile or Ser246Ile) with the corresponding residues in the adenine binding site of the homologous EcaADH have modest effects on coenzyme binding and other kinetic constants, but the Ser246Ile substitution decreases turnover numbers by 350-fold. The Ser176Phe substitution (also near adenine site) significantly decreases affinity for coenzymes and turnover numbers. In the consensus nucleotide-binding betaalphabeta fold sequence, SceADH has two alanine residues (177-GAAGGLG-183) instead of the Leu200 in EcaADH (199-GLGGVG-204); the Ala178-Ala179 to Leu substitution significantly decreases affinity for coenzymes and turnover numbers. Some NADP-dependent enzymes have an Ala corresponding to Gly183 in SceADH; the Gly183Ala substitution significantly decreases affinity for coenzymes and turnover numbers. NADP-dependent enzymes usually have a neutral residue instead of the Asp (Asp201 in SceADH) that interacts with the hydroxyl groups of the adenosine ribose, along with a basic residue (at position 202 or 203) to stabilize the 2'-phosphate of NADP. The Gly203Arg change in SceADH does not significantly affect the kinetics. The Gly183Ala or Gly203Arg substitutions do not enable SceADH to use NADP+ as coenzyme. SceADH with the single Asp201Gly or double Asp201Gly:Gly203Arg substitutions have similar, low activity with NADP+. The results suggest that several of the amino acid residues participate in coenzyme binding and that conversion of specificity for coenzyme requires multiple substitutions. Copyright 1999 Academic Press.
机译:酵母(Saccharomyces cerevisiae)酒精脱氢酶I(SceADH)与马(Equus caballus)肝脏酒精脱氢酶E同工酶(EcaADH)结合的NAD +和NADH结合不紧密,并且能够更快地转移底物,而且这两种酶均未有效利用NADP。拟议的SceADH的腺苷酸结合口袋中的氨基酸残基被取代,以尝试改善对辅酶的亲和力或与NADP的反应性。用同源EcaADH的腺嘌呤结合位点中具有相应残基的SceADH(Gly202Ile或Ser246Ile)取代对辅酶结合和其他动力学常数具有适度的影响,但Ser246Ile取代使营业额减少了350倍。 Ser176Phe取代(也在腺嘌呤位点附近)显着降低了对辅酶的亲和力和周转率。在共有核苷酸结合βalphabeta折叠序列中,SceADH具有两个丙氨酸残基(177-GAAGGLG-183),而不是EcaADH中的Leu200(199-GLGGVG-204); Ala178-Ala179取代Leu会显着降低对辅酶的亲和力和周转率。一些NADP依赖性酶的Ala对应于SceADH中的Gly183。 Gly183Ala替代显着降低了对辅酶的亲和力和周转率。 NADP依赖性酶通常具有一个中性残基,而不是与腺苷核糖的羟基相互作用的Asp(SceADH中为Asp201),以及一个碱性残基(位于202或203位),以稳定NADP的2'-磷酸。 SceADH中Gly203Arg的变化不会显着影响动力学。 Gly183Ala或Gly203Arg取代不能使SceADH使用NADP +作为辅酶。具有单个Asp201Gly或两个Asp201Gly:Gly203Arg取代的SceADH对NADP +具有相似的低活性。结果表明,一些氨基酸残基参与了辅酶结合,并且对辅酶的特异性转化需要多次取代。版权所有1999,学术出版社。

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