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来自菊欧文氏菌的果胶酸裂解酶Pel9A的晶体结构。

The crystal structure of pectate lyase Pel9A from Erwinia chrysanthemi.

作者信息

Jenkins John, Shevchik Vladimir E, Hugouvieux-Cotte-Pattat Nicole, Pickersgill Richard W

机构信息

Institute of Food Research, Norwich Research Park, Colney Lane, Norwich, NR4 7UA, United Kingdom.

出版信息

J Biol Chem. 2004 Mar 5;279(10):9139-45. doi: 10.1074/jbc.M311390200. Epub 2003 Dec 11.

Abstract

The "family 9 polysaccharide lyase" pectate lyase L (Pel9A) from Erwinia chrysanthemi comprises a 10-coil parallel beta-helix domain with distinct structural features including an asparagine ladder and aromatic stack at novel positions within the superhelical structure. Pel9A has a single high affinity calcium-binding site strikingly similar to the "primary" calcium-binding site described previously for the family Pel1A pectate lyases, and there is strong evidence for a common second calcium ion that binds between enzyme and substrate in the "Michaelis" complex. Although the primary calcium ion binds substrate in subsite -1, it is the second calcium ion, whose binding site is formed by the coming together of enzyme and substrate, that facilitates abstraction of the C5 proton from the sacharride in subsite +1. The role of the second calcium is to withdraw electrons from the C6 carboxylate of the substrate, thereby acidifying the C5 proton facilitating its abstraction and resulting in an E1cb-like anti-beta-elimination mechanism. The active site geometries and mechanism of Pel1A and Pel9A are closely similar, but the catalytic base is a lysine in the Pel9A enzymes as opposed to an arginine in the Pel1A enzymes.

摘要

来自菊欧文氏菌的“9家族多糖裂解酶”果胶酸裂解酶L(Pel9A)包含一个10螺旋平行β-螺旋结构域,具有独特的结构特征,包括在超螺旋结构内新位置的天冬酰胺梯和芳香族堆积。Pel9A有一个单一的高亲和力钙结合位点,与先前描述的Pel1A家族果胶酸裂解酶的“主要”钙结合位点惊人地相似,并且有强有力的证据表明在“米氏”复合物中酶与底物之间存在一个共同的第二个钙离子。虽然主要的钙离子在亚位点-1结合底物,但第二个钙离子的结合位点是由酶和底物结合形成的,它促进了亚位点+1中糖的C5质子的提取。第二个钙离子的作用是从底物的C6羧酸盐中提取电子,从而使C5质子酸化,促进其提取,并导致类似E1cb的反β-消除机制。Pel1A和Pel9A的活性位点几何结构和机制非常相似,但Pel9A酶中的催化碱基是赖氨酸,而Pel1A酶中的是精氨酸。

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