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大肠杆菌DnaB蛋白的结构与功能:N端结构域在解旋酶活性中的作用

Structure and function of Escherichia coli DnaB protein: role of the N-terminal domain in helicase activity.

作者信息

Biswas S B, Chen P H, Biswas E E

机构信息

Department of Pediatrics, University of Maryland School of Medicine, Baltimore 21201, USA.

出版信息

Biochemistry. 1994 Sep 20;33(37):11307-14. doi: 10.1021/bi00203a028.

Abstract

We have analyzed the contributions of specific domains of DnaB helicase to its quaternary structure and multienzyme activities. Highly purified tryptic fragments containing various domains of DnaB helicase were prepared. Fragment I lacks 14 amino acid (aa) residues from the N-terminal of DnaB helicase. Fragments II and III are 33-kDa C-terminal and 12-kDa N-terminal polypeptides, respectively, of fragment I. The single-stranded DNA-dependent ATPase and DNA helicase activities of DnaB helicase and its fragments were examined in detail. The ATPase activities of native DnaB helicase and fragment I were comparable; however, the ATPase activity of fragment II was somewhat diminished. Unlike the ATPase activity, the DNA helicase activity was totally abolished in fragment II and was not complemented by the addition of equimolar fragment III. Consequently, the N-terminal 17-kDa domain appeared to have an indispensable role in the DNA helicase action, but not in other enzymatic activities. Fragment I had a hexameric structure similar to that observed with DnaB helicase in both size exclusion HPLC (SE-HPLC) and chemical cross-linking studies. SE-HPLC analysis indicated that fragment II had an apparent hexameric form. However, a detailed chemical cross-linking analysis showed that it formed stable dimers but the formation of a stable hexamer was severely impaired. Thus, the N-terminal domain appeared to have a strong influence on the hexamer formation.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

我们分析了DnaB解旋酶特定结构域对其四聚体结构和多酶活性的贡献。制备了含有DnaB解旋酶各个结构域的高度纯化的胰蛋白酶片段。片段I缺少DnaB解旋酶N端的14个氨基酸残基。片段II和III分别是片段I的33 kDa C端和12 kDa N端多肽。详细检测了DnaB解旋酶及其片段的单链DNA依赖性ATP酶和DNA解旋酶活性。天然DnaB解旋酶和片段I的ATP酶活性相当;然而,片段II的ATP酶活性有所降低。与ATP酶活性不同,片段II的DNA解旋酶活性完全丧失,且添加等摩尔的片段III也不能使其恢复。因此,N端17 kDa结构域似乎在DNA解旋酶作用中起不可或缺的作用,但在其他酶活性中并非如此。在尺寸排阻高效液相色谱(SE-HPLC)和化学交联研究中,片段I具有与DnaB解旋酶类似的六聚体结构。SE-HPLC分析表明片段II具有明显的六聚体形式。然而,详细的化学交联分析表明它形成了稳定的二聚体,但稳定六聚体的形成严重受损。因此,N端结构域似乎对六聚体的形成有很大影响。(摘要截短于250字)

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