...
首页> 外文期刊>Biochemistry >Structural basis for stereoselectivity in the (R)- and (S)-hydroxypropylthioethanesulfonate dehydrogenases
【24h】

Structural basis for stereoselectivity in the (R)- and (S)-hydroxypropylthioethanesulfonate dehydrogenases

机译:(R)-和(S)-羟丙基硫代乙烷磺酸盐脱氢酶中立体选择性的结构基础

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Epoxide metabolism in Xanthobacter autotrophicus Py2 results in the conversion of epoxypropane to acetoacetate. Epoxide metabolism is initiated by the nucleophilic addition of coenzyme M to the (R)-and (S)-enantiomers of epoxypropane which forms the respective enantiomers of 2-hydroxypropyl-coenyme M. The (R)-and (S)-enantiomers of 2-hydroxypropyl coenzyme are oxidized to the achiral product 2-ketopropyl-CoM by two stereoselective dehydrogenases. The dehydrogenases catalyzing these reactions, termed (R)-hydroxypropyl-coenzyme M dehydrogenase (R-HPCDH) and (S)hydroxypropyl-coenzyme M dehydrogenase (S-HPCDH), are NAD(+)-dependent enzymes belonging to the short chain dehydrogenase/ reductase (SDR) family of enzymes. In this study, the crystal structure of R-HPCDH cocrystallized in the presence of (S)-hydroxypropyl-coenzyme M has been determined using X-ray diffraction methods and refined to 1.8 angstrom resolution. The structure of R-HPCDH is tetrameric and stabilized by the interaction of the terminal carboxylates of each subunit with divalent metal ions. The structure of the presumed product-bound state reveals that binding interactions between the negatively charged oxygen atoms of the sulfonate moiety have striking similarities to sulfonate interactions observed in the previously determined structure of 2-ketopropyl-CoM oxidoreductase/ carboxylase, highlighting the utility of coenzyme M as a carrier molecule in the pathway. The key elements of the aforementioned interactions are electrostatic interactions between the sulfonate oxygen atoms and two arginine residues (R152 and R196) of R-HPCDH. The comparison of the structure of R-HPCDH with a homology model of S-HPCDH provides a structural basis for a mechanism of substrate specificity in which the binding of the substrate sulfonate moiety at distinct sites on each stereoselective enzyme directs the orientation of the appropriate substrate enantiomer for hydride abstraction.
机译:自养黄单胞菌Py2中的环氧代谢会导致环氧丙烷转化为乙酰乙酸酯。环氧代谢是通过将辅酶M亲核加成到环氧丙烷的(R)和(S)对映异构体上而形成的,而环氧丙烷形成2-羟丙基辅酶M的对映异构体。 2-羟丙基辅酶被两种立体选择性脱氢酶氧化为非手性产物2-酮丙基-CoM。催化这些反应的脱氢酶称为(R)-羟丙基辅酶M脱氢酶(R-HPCDH)和(S)羟丙基辅酶M脱氢酶(S-HPCDH),是NAD(+)依赖的酶,属于短链脱氢酶/还原酶(SDR)家族的酶。在这项研究中,已使用X射线衍射法确定了在(S)-羟丙基-辅酶M存在下共结晶的R-HPCDH的晶体结构,并提纯至1.8埃分辨率。 R-HPCDH的结构是四聚体,并通过每个亚基的末端羧酸盐与二价金属离子的相互作用而稳定。假定的产物结合状态的结构表明,磺酸盐部分带负电荷的氧原子之间的结合相互作用与在先前确定的2-酮丙基-CoM氧化还原酶/羧化酶结构中观察到的磺酸盐相互作用具有惊人的相似性,从而突出了辅酶的实用性M作为途径中的载体分子。前述相互作用的关键要素是磺酸氧原子与R-HPCDH的两个精氨酸残基(R152和R196)之间的静电相互作用。 R-HPCDH的结构与S-HPCDH的同源性模型的比较为底物特异性机理提供了结构基础,其中底物磺酸盐部分在每种立体选择酶上不同位点的结合将指导适当底物的方向氢化物提取的对映体。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号