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细胞外果胶酸裂解酶超家族中基于结构的蛋白质序列比对的功能意义

Functional implications of structure-based sequence alignment of proteins in the extracellular pectate lyase superfamily.

作者信息

Henrissat B, Heffron S E, Yoder M D, Lietzke S E, Jurnak F

机构信息

Centre de Recherches sur les Macromolecules Vegetales, Centre National de la Recherche Scientifique, Grenoble, France.

出版信息

Plant Physiol. 1995 Mar;107(3):963-76. doi: 10.1104/pp.107.3.963.

Abstract

Pectate lyases are plant virulence factors that degrade the pectate component of the plant cell wall. The enzymes share considerable sequence homology with plant pollen and style proteins, suggesting a shared structural topology and possibly functional relationships as well. The three-dimensional structures of two Erwinia chrysanthemi pectate lyases, C and E, have been superimposed and the structurally conserved amino acids have been identified. There are 232 amino acids that superimpose with a root-mean-square deviation of 3 A or less. These amino acids have been used to correct the primary sequence alignment derived from evolution-based techniques. Subsequently, multiple alignment techniques have allowed the realignment of other extracellular pectate lyases as well as all sequence homologs, including pectin lyases and the plant pollen and style proteins. The new multiple sequence alignment reveals amino acids likely to participate in the parallel beta helix motif, those involved in binding Ca2+, and those invariant amino acids with potential catalytic properties. The latter amino acids cluster in two well-separated regions on the pectate lyase structures, suggesting two distinct enzymatic functions for extracellular pectate lyases and their sequence homologs.

摘要

果胶酸裂解酶是植物致病因子,可降解植物细胞壁的果胶酸成分。这些酶与植物花粉和花柱蛋白具有相当大的序列同源性,表明它们具有共同的结构拓扑,可能也具有功能关系。已对两种菊欧文氏菌果胶酸裂解酶C和E的三维结构进行了叠加,并确定了结构保守的氨基酸。有232个氨基酸叠加时的均方根偏差为3埃或更小。这些氨基酸已用于校正基于进化技术得出的一级序列比对。随后,多重比对技术也允许对其他细胞外果胶酸裂解酶以及所有序列同源物进行重新比对,包括果胶裂解酶以及植物花粉和花柱蛋白。新的多序列比对揭示了可能参与平行β螺旋基序的氨基酸、参与结合Ca2+的氨基酸以及具有潜在催化特性的不变氨基酸。后一类氨基酸聚集在果胶酸裂解酶结构上两个相距较远的区域,表明细胞外果胶酸裂解酶及其序列同源物具有两种不同的酶功能。

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