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D-丙氨酰-脂磷壁酸的生物合成:体外合成产物中酯键连接的D-丙氨酸的特性

Biosynthesis of D-alanyl-lipoteichoic acid: characterization of ester-linked D-alanine in the in vitro-synthesized product.

作者信息

Childs W C, Neuhaus F C

出版信息

J Bacteriol. 1980 Jul;143(1):293-301. doi: 10.1128/jb.143.1.293-301.1980.

Abstract

d-Alanyl-lipoteichoic acid (d-alanyl-LTA) contains d-alanine ester residues which control the ability of this polyer to chelate Mg(2+). In Lactobacillus casei a two-step in vitro reaction sequence catalyzed by the d-alanine-activating enzyme and d-alanine:membrane acceptor ligase incorporates d-alanine into membrane acceptor. In this paper we provide additional evidence that the in vitro system catalyzes the covalent incorporation of d-[(14)C]alanine into membrane acceptor which is the poly([(3)H]glycerol phosphate) moiety of d-alanyl-LTA. This conclusion was supported by the observation that the d-[(14)C]alanine and [(3)H]glycerol labels of the partially purified product were co-precipitated by antiserum containing globulins specific for poly(glycerol phosphate). The isolation of d-[(14)C]alanyl-[(3)H]glycerol from d-[(14)C]alanine.[(3)H]glycerol-labeled d-alanyl-LTA synthesized in the in vitro system indicated that the d-alanine was linked to the poly(glycerol phosphate) chain of the LTA. A comparison of the reactivities of the d-alanine residues of d-alanyl-glycerol and d-alanyl-LTA supported the conclusion that the incorporated residue of d-alanine was attached by an ester linkage. Thus, the data indicated that the in vitro system catalyzes the incorporation of d-alanine covalently linked by ester linkages to the glycerol moieties of the poly(glycerol phosphate) chains of d-alanyl-LTA. New procedures are presented for the partial purification of d-alanyl-LTA with a high yield of ester-linked d-alanine and for the sequential degradation of the poly(glycerol phosphate) moiety substituted with d-alanine of d-alanyl-LTA with phosphodiesterase II/phosphatase from Aspergillus niger.

摘要

D-丙氨酰-脂磷壁酸(D-丙氨酰-LTA)含有D-丙氨酸酯残基,这些残基控制着这种聚合物螯合Mg(2+)的能力。在干酪乳杆菌中,由D-丙氨酸激活酶和D-丙氨酸:膜受体连接酶催化的两步体外反应序列将D-丙氨酸掺入膜受体中。在本文中,我们提供了额外的证据,证明体外系统催化D-[(14)C]丙氨酸共价掺入膜受体中,该膜受体是D-丙氨酰-LTA的聚([(3)H]甘油磷酸)部分。这一结论得到了以下观察结果的支持:部分纯化产物的D-[(14)C]丙氨酸和[(3)H]甘油标记物被含有对聚甘油磷酸具有特异性球蛋白的抗血清共沉淀。从体外系统合成的D-[(14)C]丙氨酸·[(3)H]甘油标记的D-丙氨酰-LTA中分离出D-[(14)C]丙氨酰-[(3)H]甘油,表明D-丙氨酸与LTA的聚甘油磷酸链相连。对D-丙氨酰甘油和D-丙氨酰-LTA的D-丙氨酸残基反应性的比较支持了以下结论:掺入的D-丙氨酸残基通过酯键连接。因此,数据表明体外系统催化D-丙氨酸通过酯键共价连接到D-丙氨酰-LTA的聚甘油磷酸链的甘油部分。本文介绍了新的方法,用于高产率地部分纯化具有酯连接的D-丙氨酸的D-丙氨酰-LTA,以及用来自黑曲霉的磷酸二酯酶II/磷酸酶对被D-丙氨酸取代的D-丙氨酰-LTA的聚甘油磷酸部分进行顺序降解。

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