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大肠杆菌中aas基因的序列与功能

Sequence and function of the aas gene in Escherichia coli.

作者信息

Jackowski S, Jackson P D, Rock C O

机构信息

Department of Biochemistry, St. Jude Children's Research Hospital, Memphis, Tennessee 38101.

出版信息

J Biol Chem. 1994 Jan 28;269(4):2921-8.

PMID:8300626
Abstract

2-Acylglycerophosphoethanolamine (2-acyl-GPE) acyltransferase and acyl-acyl carrier protein (acyl-ACP) synthase activities are encoded by the aas gene in Escherichia coli. The aas gene was cloned, and the DNA sequence of the aas gene and the region between aas and galR established the clockwise gene order in the 61.2 min of the E. coli chromosome as aas-orf-galR-lysA-lysR-orf-araE. The aas gene consists of a single open reading frame of 2,157 base pairs predicted to encode a protein of 80.6 kDa. Strains harboring multiple copies of the aas gene overproduced both 2-acyl-GPE acyltransferase and acyl-ACP synthetase activities in vitro and had higher specific activities for the incorporation of exogenous fatty acids and lysophospholipids into the membrane in vivo. Specific expression of the aas gene yielded a protein with an apparent molecular mass of 81 kDa. Comparison of the predicted amino acid sequence of the aas gene with mammalian, yeast, and bacterial long chain acyl-coenzyme A synthetases revealed three domains of high similarity which are postulated to form the acyl-AMP binding pocket. These data verify that 2-acyl-GPE acyltransferase and acyl-ACP synthetase are reactions carried out by the same gene product, verify the role of 2-acyl-GPE acyltransferase/acyl-ACP synthetase in the acylation of endogenous 2-acyl-GPE, and establish the product of the aas gene as the rate-limiting enzyme in the uptake and incorporation of exogenous 2-acyllysophospholipids.

摘要

2-酰基甘油磷酸乙醇胺(2-酰基-GPE)酰基转移酶和酰基-酰基载体蛋白(酰基-ACP)合成酶活性由大肠杆菌中的aas基因编码。克隆了aas基因,aas基因以及aas和galR之间区域的DNA序列确定了大肠杆菌染色体61.2分钟处的顺时针基因顺序为aas-orf-galR-lysA-lysR-orf-araE。aas基因由一个2157个碱基对的单一开放阅读框组成,预计编码一个80.6 kDa的蛋白质。携带aas基因多拷贝的菌株在体外过量产生2-酰基-GPE酰基转移酶和酰基-ACP合成酶活性,并且在体内将外源脂肪酸和溶血磷脂掺入膜中的比活性更高。aas基因的特异性表达产生了一种表观分子量为81 kDa 的蛋白质。将aas基因的预测氨基酸序列与哺乳动物、酵母和细菌的长链酰基辅酶A合成酶进行比较,发现了三个高度相似的结构域,推测它们形成酰基-AMP结合口袋。这些数据证实2-酰基-GPE酰基转移酶和酰基-ACP合成酶是由同一基因产物进行的反应,证实了2-酰基-GPE酰基转移酶/酰基-ACP合成酶在内源2-酰基-GPE酰化中的作用,并确定aas基因的产物是外源2-酰基溶血磷脂摄取和掺入中的限速酶。

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