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大肠杆菌主要复制解旋酶DnaB蛋白与单链DNA的相互作用。核酸不会缠绕在蛋白质六聚体周围。

Interactions of Escherichia coli primary replicative helicase DnaB protein with single-stranded DNA. The nucleic acid does not wrap around the protein hexamer.

作者信息

Bujalowski W, Jezewska M J

机构信息

Department of Human Biological Chemistry and Genetics, University of Texas Medical Branch at Galveston 77555-1053, USA.

出版信息

Biochemistry. 1995 Jul 11;34(27):8513-9. doi: 10.1021/bi00027a001.

DOI:10.1021/bi00027a001
PMID:7612593
Abstract

The interactions of the Escherichia coli primary replicative helicase DnaB protein with single-stranded (ss) DNA have been studied using the thermodynamically rigorous fluorescence titration technique, which allowed us to obtain absolute stoichiometries of the formed complexes and interaction parameters without any assumptions about the relationship between the observed signal change and the degree of binding. Binding of the DnaB protein to the ssDNA fluorescent derivative poly(d epsilon A) is accompanied by a strong increase of the nucleic acid fluorescence. We show that, in the presence of the ATP nonhydrolyzable analog AMP-PNP, the DnaB helicase binds polymer ssDNA with the site-size of 20 +/- 3 nucleotides per protein hexamer. This stoichiometry has been fully confirmed in the binding experiments with ssDNA oligomers of 40 and 20 residues in length. Two DnaB hexamers bind to 40-mer, and one DnaB hexamer binds to 20-mer. Thermodynamic studies of the 20-mer binding to the DnaB hexamer show that the hexamer has a single, strong binding site for ssDNA. Moreover, photo-cross-linking experiments indicate that only a single subunit is primarily in contact with ssDNA. This surprisingly very low site-size of the large hexameric helicase--ssDNA complex, the existence of only a single, strong ssDNA binding site on the hexamer, and the results of photo-cross-linking experiments preclude the possibility of extensive wrapping of the ssDNA around the hexamer and formation of the complex in which all six protomers are simultaneously bound to ss nucleic acid.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

利用热力学严谨的荧光滴定技术研究了大肠杆菌主要复制解旋酶DnaB蛋白与单链(ss)DNA的相互作用,该技术使我们能够获得所形成复合物的绝对化学计量和相互作用参数,而无需对观察到的信号变化与结合程度之间的关系做任何假设。DnaB蛋白与ssDNA荧光衍生物聚(dεA)的结合伴随着核酸荧光的强烈增强。我们发现,在存在ATP不可水解类似物AMP-PNP的情况下,DnaB解旋酶以每个蛋白六聚体20±3个核苷酸的位点大小结合聚合物ssDNA。在与长度为40和20个残基的ssDNA寡聚物的结合实验中,这一化学计量已得到充分证实。两个DnaB六聚体与40聚体结合,一个DnaB六聚体与20聚体结合。对20聚体与DnaB六聚体结合的热力学研究表明,六聚体对ssDNA有一个单一的强结合位点。此外,光交联实验表明只有一个亚基主要与ssDNA接触。这种大型六聚体解旋酶-ssDNA复合物令人惊讶地非常小的位点大小、六聚体上仅存在一个单一的强ssDNA结合位点以及光交联实验结果排除了ssDNA在六聚体周围广泛缠绕并形成所有六个原体同时与ss核酸结合的复合物的可能性。(摘要截短于250字)

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Interactions of Escherichia coli primary replicative helicase DnaB protein with single-stranded DNA. The nucleic acid does not wrap around the protein hexamer.大肠杆菌主要复制解旋酶DnaB蛋白与单链DNA的相互作用。核酸不会缠绕在蛋白质六聚体周围。
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2
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