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醋栗醋栗的Cl(-)转运ATP酶的b亚基与大肠杆菌F1-ATP酶的β亚基的可交换性:嵌合β亚基的构建及互补研究。

Exchangeability of the b subunit of the Cl(-)-translocating ATPase of Acetabularia acetabulum with the beta subunit of E. coli F1-ATPase: construction of the chimeric beta subunits and complementation studies.

作者信息

Ikeda M, Kadowaki H, Ikeda H, Moritani C, Kanazawa H

机构信息

Faculty of Health and Welfare Science, Okayama Prefectural University, Kuboki, Soja, Japan.

出版信息

Biochim Biophys Acta. 1997 Nov 10;1322(1):33-40. doi: 10.1016/s0005-2728(97)00066-2.

Abstract

The gene encoding the b subunit of the Cl(-)-translocating ATPase (aclB) was isolated from total RNA and poly(A)+ RNA of Acetabularia acetabulum and sequenced (total nucleotides of 3038 bp and an open reading frame with 478 amino acids). The deduced amino acid sequence showed high similarity to the beta subunit of the F type ATPases, but was different in the N-terminal 120 amino acids. The role of the N-terminal region was investigated using an F -ATPase beta-less mutant of E. coli, JP17. The JP17 strain expressing the aclB could not grow under conditions permitting oxidative phosphorylation, although ACLB was detected in the membrane fraction. The beta subunit was divided into three portions: amino acid position from 1 to 95 (portion A), 96 to 161 (portion B) and 162 to the C-terminus (portion C). The corresponding regions of ACLB were designated as portions A' (from 1 to 106), B' (from 107 to 172) and C' (from 173 to 478). Chimeric proteins with combinations of A-B'-C', A-B-C' and A'-B-C restored the function as the beta subunit in E. coli F0F1-complex, but those with combinations of A'-B'-C and A-B'-C had no function as the beta subunit. These findings suggested that portion B plays an important role in the assembly and function of the beta subunit in the F0F1-complex, while portion B' of ACLB exhibited inhibitory effects on assembly and function. In addition, portion A was also important for interaction of the beta subunit with the alpha subunit in E. coli F0F1-complex. These findings also suggested that the b subunit of the Cl(-)-translocating ATPase of A. acetabulum has a different function in the Cl(-)-translocating ATPase complex, although the primary structure resembled to the beta subunit of the F1-ATPase.

摘要

从伞藻的总RNA和聚腺苷酸加尾RNA中分离出编码Cl(-)转运ATP酶b亚基(aclB)的基因并进行测序(全长3038个核苷酸,开放阅读框含478个氨基酸)。推导的氨基酸序列与F型ATP酶的β亚基高度相似,但N端的120个氨基酸有所不同。利用大肠杆菌的F -ATP酶β亚基缺失突变体JP17研究了N端区域的作用。表达aclB的JP17菌株在允许氧化磷酸化的条件下无法生长,尽管在膜组分中检测到了ACLB。β亚基被分为三个部分:氨基酸位置从1到95(部分A)、96到161(部分B)和162到C端(部分C)。ACLB的相应区域被指定为部分A'(从1到106)、B'(从107到172)和C'(从173到478)。具有A-B'-C'、A-B-C'和A'-B-C组合的嵌合蛋白在大肠杆菌F0F1复合物中恢复了作为β亚基的功能,但具有A'-B'-C和A-B'-C组合的嵌合蛋白没有作为β亚基的功能。这些发现表明,部分B在F0F1复合物中β亚基的组装和功能中起重要作用,而ACLB的部分B'对组装和功能表现出抑制作用。此外,部分A对大肠杆菌F0F1复合物中β亚基与α亚基的相互作用也很重要。这些发现还表明,伞藻Cl(-)转运ATP酶的b亚基在Cl(-)转运ATP酶复合物中具有不同的功能,尽管其一级结构与F1-ATP酶的β亚基相似。

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