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新型藤壶水下粘附蛋白是一种富含带电荷氨基酸的蛋白质,由富含半胱氨酸的重复序列构成。

Novel barnacle underwater adhesive protein is a charged amino acid-rich protein constituted by a Cys-rich repetitive sequence.

作者信息

Kamino K

机构信息

Shimizu Laboratories, Marine Biotechnology Institute, 1900 Sodeshi, Shimizu, Shizuoka 424-0037, Japan.

出版信息

Biochem J. 2001 Jun 1;356(Pt 2):503-7. doi: 10.1042/0264-6021:3560503.

Abstract

Barnacle cement is an underwater adhesive that is used for permanent settlement, and is an insoluble protein complex. A method for rendering soluble the cement of Megabalanus rosa has been developed, and three major proteins have been identified in a previous study. To survey the M. rosa cement proteins in a lower molecular mass range, the cement proteins were separated by reversed-phase HPLC and a previously unidentified protein named 20 kDa M. rosa cement protein (Mrcp-20k) was found. Mrcp-20k cDNA was cloned to reveal its primary structure. This cDNA was 902 bp long and encoded a 202 amino acid-long open reading frame, including 19 amino acids of the signal sequence. The molecular mass in the disulphide form was calculated to be 20357 Da and the isoelectric point of the mature polypeptide was 4.72. Mrcp-20k was characterized by an abundance of Cys residues and charged amino acids. The most common amino acid was Cys (17.5%), with Asp (11.5%), Glu (10.4%) and His (10.4%) following in order of magnitude. The alignment of the Cys residues indicated the primary structure of this protein to consist of six degenerated repeats, each about 30 residues long. Mrcp-20k has no intermolecular disulphide bonds and no free thiol groups of Cys in the insoluble cement complex. Abundant Cys is thought to play a role in maintaining the topology of charged amino acids on the molecular surface by intramolecular disulphide-bond formation. The possible function of abundant charged amino acids, including the interaction with a variety of surface metals on the substratum, is discussed.

摘要

藤壶胶是一种用于永久附着的水下胶粘剂,是一种不溶性蛋白质复合物。已经开发出一种使红巨藤壶的藤壶胶溶解的方法,并且在先前的一项研究中鉴定出了三种主要蛋白质。为了研究红巨藤壶藤壶胶中较低分子量范围内的蛋白质,通过反相高效液相色谱法分离了藤壶胶蛋白,并发现了一种先前未鉴定的名为20 kDa红巨藤壶藤壶胶蛋白(Mrcp - 20k)的蛋白质。克隆了Mrcp - 20k的cDNA以揭示其一级结构。该cDNA长902 bp,编码一个202个氨基酸长的开放阅读框,包括19个氨基酸的信号序列。二硫键形式的分子量计算为20357 Da,成熟多肽的等电点为4.72。Mrcp - 20k的特征是富含半胱氨酸残基和带电荷的氨基酸。最常见的氨基酸是半胱氨酸(17.5%),其次是天冬氨酸(11.5%)、谷氨酸(10.4%)和组氨酸(10.4%)。半胱氨酸残基的比对表明该蛋白质的一级结构由六个退化重复序列组成,每个重复序列约30个残基长。在不溶性藤壶胶复合物中,Mrcp - 20k没有分子间二硫键,也没有半胱氨酸的游离巯基。大量的半胱氨酸被认为通过分子内二硫键的形成在维持分子表面带电荷氨基酸的拓扑结构中起作用。讨论了包括与基质上各种表面金属相互作用在内的大量带电荷氨基酸的可能功能。

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