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嗜热栖热菌微小染色体维持蛋白的模块化组织

Modular organization of the Sulfolobus solfataricus mini-chromosome maintenance protein.

作者信息

Pucci Biagio, De Felice Mariarita, Rocco Monia, Esposito Francesco, De Falco Mariarosaria, Esposito Luca, Rossi Mosè, Pisani Francesca M

机构信息

Istituto di Biochimica delle Proteine, Consiglio Nazionale Ricerche, Via P. Castellino, 111, 80131 Napoli, Italy.

出版信息

J Biol Chem. 2007 Apr 27;282(17):12574-82. doi: 10.1074/jbc.M610953200. Epub 2007 Mar 3.

Abstract

Mini-chromosome maintenance (MCM) proteins form ring-like hexameric complexes that are commonly believed to act as the replicative DNA helicase at the eukaryotic/archaeal DNA replication fork. Because of their simplified composition with respect to the eukaryotic counterparts, the archaeal MCM complexes represent a good model system to use in analyzing the structural/functional relationships of these important replication factors. In this study the domain organization of the MCM-like protein from Sulfolobus solfataricus (Sso MCM) has been dissected by trypsin partial proteolysis. Three truncated derivatives of Sso MCM corresponding to protease-resistant domains were produced as soluble recombinant proteins and purified: the N-terminal domain (N-ter, residues 1-268); a fragment comprising the AAA+ and C-terminal domains (AAA+-C-ter, residues 269-686); and the C-terminal domain (C-ter, residues 504-686). All of the purified recombinant proteins behaved as monomers in solution as determined by analytical gel filtration chromatography, suggesting that the polypeptide chain integrity is required for stable oligomerization of Sso MCM. However, the AAA+-C-ter derivative, which includes the AAA+ motor domain and retains ATPase activity, was able to form dimers in solution when ATP was present, as analyzed by size exclusion chromatography and glycerol gradient sedimentation analyses. Interestingly, the AAA+-C-ter protein could displace oligonucleotides annealed to M13 single-stranded DNA although with a reduced efficiency in comparison with the full-sized Sso MCM. The implications of these findings for understanding the DNA helicase mechanism of the MCM complex are discussed.

摘要

微小染色体维持(MCM)蛋白形成环状六聚体复合物,通常认为其在真核生物/古细菌的DNA复制叉处作为复制性DNA解旋酶发挥作用。由于与真核生物对应物相比其组成更为简化,古细菌MCM复合物是用于分析这些重要复制因子的结构/功能关系的良好模型系统。在本研究中,通过胰蛋白酶部分蛋白酶解对来自嗜热栖热菌的类MCM蛋白(Sso MCM)的结构域组织进行了剖析。产生了三种与蛋白酶抗性结构域相对应的Sso MCM截短衍生物,作为可溶性重组蛋白进行纯化:N端结构域(N-ter,第1至268位氨基酸残基);包含AAA +和C端结构域的片段(AAA + -C-ter,第269至686位氨基酸残基);以及C端结构域(C-ter,第504至686位氨基酸残基)。通过分析凝胶过滤色谱法测定,所有纯化的重组蛋白在溶液中均表现为单体,这表明Sso MCM的稳定寡聚化需要多肽链的完整性。然而,通过尺寸排阻色谱法和甘油梯度沉降分析表明,包含AAA +运动结构域并保留ATP酶活性的AAA + -C-ter衍生物在存在ATP时能够在溶液中形成二聚体。有趣的是,AAA + -C-ter蛋白能够取代与M13单链DNA退火的寡核苷酸,但与全长Sso MCM相比效率降低。讨论了这些发现对理解MCM复合物的DNA解旋酶机制的意义。

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