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一种小型内含肽的晶体结构揭示了一个保守的催化模块,该模块在蛋白质剪接过程中参与天冬酰胺的侧链环化。

Crystal structure of a mini-intein reveals a conserved catalytic module involved in side chain cyclization of asparagine during protein splicing.

作者信息

Ding Yi, Xu Ming-Qun, Ghosh Inca, Chen Xuehui, Ferrandon Sebastien, Lesage Guillaume, Rao Zihe

机构信息

Laboratory of Structural Biology and the Ministry of Education Laboratory of Protein Science, School of Life Science and Engineering, Tsinghua University, Beijing 100084, People's Republic of China.

出版信息

J Biol Chem. 2003 Oct 3;278(40):39133-42. doi: 10.1074/jbc.M306197200. Epub 2003 Jul 23.

Abstract

We have determined the crystal structure of a 154-residue intein derived from the dnaB gene of Synechocystis sp. strain PCC6803 and refined it to a 2.0-A resolution. The x-ray structure suggests that this intein possesses two catalytic sites that appear to be separately responsible for splicing and cleavage of the N- and C-terminal scissile bonds. The conserved intein block F residues are the important components of a catalytic site for side chain cyclization of the last intein residue, Asn-154. The data suggest that the imidazole ring of His-143 is involved in the activation of the side chain Ndelta atom of Asn-154, leading to a nucleophilic attack on the carbonyl carbon of Asn-154. Substitution of His-143 with Ala or Gln resulted in the inhibition of C-terminal cleavage. His-153, Asp-136, and a water molecule appear to constitute an oxyanion binding site by contacting the carbonyl oxygen of Asn-154 to stabilize the transition state. The structure and mutagenesis data also support that the close contact between the hydroxyl groups of Thr-138 and Ser-155, whose side chain participates in an S --> O acyl shift, plays an important role in the nucleophile orientation. Our structural modeling suggests that this catalytic module is conserved in the C-terminal subdomains of inteins from diverse organisms.

摘要

我们已经确定了来源于集胞藻属PCC6803菌株dnaB基因的一个含154个残基的内含肽的晶体结构,并将其精修至2.0埃分辨率。X射线结构表明,该内含肽拥有两个催化位点,似乎分别负责N端和C端可裂键的剪接和切割。保守的内含肽模块F残基是最后一个内含肽残基Asn-154侧链环化催化位点的重要组成部分。数据表明,His-143的咪唑环参与Asn-154侧链Nδ原子的活化,从而导致对Asn-154羰基碳的亲核攻击。用Ala或Gln取代His-143会导致C端切割受到抑制。His-153、Asp-136和一个水分子似乎通过与Asn-154的羰基氧接触构成一个氧阴离子结合位点,以稳定过渡态。结构和诱变数据还支持,Thr-138和Ser-155的羟基之间的紧密接触(其侧链参与S→O酰基转移)在亲核试剂定向中起重要作用。我们的结构模型表明,这种催化模块在来自不同生物体的内含肽的C端亚结构域中是保守的。

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