首页> 外文OA文献 >X-ray Crystallographic Analysis of the 6-Aminohexanoate Cyclic Dimer Hydrolase: CATALYTIC MECHANISM AND EVOLUTION OF AN ENZYME RESPONSIBLE FOR NYLON-6 BYPRODUCT DEGRADATION*
【2h】

X-ray Crystallographic Analysis of the 6-Aminohexanoate Cyclic Dimer Hydrolase: CATALYTIC MECHANISM AND EVOLUTION OF AN ENZYME RESPONSIBLE FOR NYLON-6 BYPRODUCT DEGRADATION*

机译:6-氨基己酸酯环状二聚体水解酶的X射线晶体学分析:催化尼龙6副产物降解的机理和酶的演化*

代理获取
本网站仅为用户提供外文OA文献查询和代理获取服务,本网站没有原文。下单后我们将采用程序或人工为您竭诚获取高质量的原文,但由于OA文献来源多样且变更频繁,仍可能出现获取不到、文献不完整或与标题不符等情况,如果获取不到我们将提供退款服务。请知悉。

摘要

We performed x-ray crystallographic analyses of the 6-aminohexanoate cyclic dimer (Acd) hydrolase (NylA) from Arthrobacter sp., an enzyme responsible for the degradation of the nylon-6 industry byproduct. The fold adopted by the 472-amino acid polypeptide generated a compact mixed α/β fold, typically found in the amidase signature superfamily; this fold was especially similar to the fold of glutamyl-tRNAGln amidotransferase subunit A (z score, 49.4) and malonamidase E2 (z score, 44.8). Irrespective of the high degree of structural similarity to the typical amidase signature superfamily enzymes, the specific activity of NylA for glutamine, malonamide, and indoleacetamide was found to be lower than 0.5% of that for Acd. However, NylA possessed carboxylesterase activity nearly equivalent to the Acd hydrolytic activity. Structural analysis of the inactive complex between the activity-deficient S174A mutant of NylA and Acd, performed at 1.8 Å resolution, suggested the following enzyme/substrate interactions: a Ser174-cis-Ser150-Lys72 triad constitutes the catalytic center; the backbone N in Ala171 and Ala172 are involved in oxyanion stabilization; Cys316-Sγ forms a hydrogen bond with nitrogen (Acd-N7) at the uncleaved amide bond in two equivalent amide bonds of Acd. A single S174A, S150A, or K72A substitution in NylA by site-directed mutagenesis decreased the Acd hydrolytic and esterolytic activities to undetectable levels, indicating that Ser174-cis-Ser150-Lys72 is essential for catalysis. In contrast, substitutions at position 316 specifically affected Acd hydrolytic activity, suggesting that Cys316 is responsible for Acd binding. On the basis of the structure and functional analysis, we discussed the catalytic mechanisms and evolution of NylA in comparison with other Ser-reactive hydrolases.
机译:我们进行了Arthrobacter sp。的6-氨基己酸环状二聚体(Acd)水解酶(NylA)的X射线晶体学分析,该酶负责降解尼龙6工业副产物。 472个氨基酸的多肽采用的折叠产生紧密的混合α/β折叠,通常在酰胺酶签名超家族中发现;该折叠倍数特别类似于谷氨酰​​-tRNAGln酰胺转移酶亚基A的折叠倍数(z评分,49.4)和丙二酰胺酶E2的折叠倍数(z评分,44.8)。不管与典型酰胺酶标记超家族酶的高度结构相似性如何,NylA对谷氨酰胺,丙二酰胺和吲哚乙酰胺的比活性均低于Acd的0.5%。但是,NylA具有的羧酸酯酶活性几乎与Acd的水解活性相当。结构活性为NylA的S174A突变体和Acd之间的无活性复合物的结构分析(分辨率为1.8),表明以下酶/底物相互作用:Ser174-顺式-Ser150-Lys72三联体构成催化中心。 Ala171和Ala172中的主链N与氧阴离子稳定有关。 Cys316-Sγ在Acd的两个等效酰胺键中的未裂解酰胺键上与氮形成一个氢键(Acd-N7)。通过定点诱变在NylA中单个S174A,S150A或K72A取代将Acd水解和酯水解活性降低到无法检测的水平,表明Ser174-cis-Ser150-Lys72对于催化至关重要。相反,位置316处的取代会特别影响Acd的水解活性,这表明Cys316负责Acd的结合。在结构和功能分析的基础上,我们与其他Ser反应性水解酶进行了比较,讨论了NylA的催化机理和演化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
代理获取

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