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嗜热古菌火烈鸟栖热球菌DNA聚合酶D复合物的结构域拓扑结构

Domain topology of the DNA polymerase D complex from a hyperthermophilic archaeon Pyrococcus horikoshii.

作者信息

Tang Xiao-Feng, Shen Yulong, Matsui Eriko, Matsui Ikuo

机构信息

Biological Information Research Center, National Institute of Advanced Industrial Science and Technology, Tsukuba, Ibaraki 305-8566, Japan.

出版信息

Biochemistry. 2004 Sep 21;43(37):11818-27. doi: 10.1021/bi0362931.

Abstract

Family D DNA polymerase (PolD) is a recently found DNA polymerase extensively existing in Euryarchaeota of Archaea. Here, we report the domain function of PolD in oligomerization and interaction with other proteins, which were characterized with the yeast two-hybrid (Y2H) and surface plasmon resonance (SPR) assays. A proliferating cell nuclear antigen, PhoPCNA, interacted with the N-terminus of the small subunit, DP1(1-200). Specific interaction between the remaining part of the small subunit, DP1(201-622), and the N-terminus of the large subunit, DP2(1-300), was detected by the Y2H assay. The SPR assay also indicated the intrasubunit interaction within the N-terminus, DP2(1-100), and the C-terminus, DP2(792-1163), of the large subunit. A synthetic 21 amino acid peptide corresponding to the sequence from cysteine cluster II, DP2(1290-1310), tightly interacted (a dissociation constant K(D) = 4.3 nM) with the N-terminus of the small subunit, DP1(1-200). Since the peptide could increase the 3'-5' exonuclease activity of DP1 [Shen et al. (2004) Nucleic Acids Res. 32, 158], the short region DP2(1290-1310) seems to play dual roles to form the PhoPolD complex and to regulate the 3'-5' exonuclease activity of DP1 through interaction with DP1(1-200). Furthermore, DP2(792-1163) containing the catalytic residues for DNA polymerization, Asp1122 and Asp1124, interacted with the intrasubunit domain, DP2(1-100), and the intersubunit domain, DP1(1-200). DP2(792-1163) probably forms the most important domain deeply involved in both the catalysis of DNA polymerization and stabilization of the PhoPolD complex through these multiple interactions.

摘要

D族DNA聚合酶(PolD)是最近发现的一种广泛存在于古菌广古菌门中的DNA聚合酶。在此,我们报道了PolD在寡聚化以及与其他蛋白质相互作用方面的结构域功能,这些功能通过酵母双杂交(Y2H)和表面等离子体共振(SPR)分析得以表征。一种增殖细胞核抗原,PhoPCNA,与小亚基DP1(1 - 200)的N端相互作用。通过Y2H分析检测到小亚基剩余部分DP1(201 - 622)与大亚基DP2(1 - 300)的N端之间存在特异性相互作用。SPR分析还表明大亚基的N端DP2(1 - 100)和C端DP2(792 - 1163)之间存在亚基内相互作用。一条对应于半胱氨酸簇II序列DP2(1290 - 1310)的21个氨基酸的合成肽与小亚基DP1(1 - 200)的N端紧密相互作用(解离常数K(D)=4.3 nM)。由于该肽可增强DP1的3'-5'核酸外切酶活性[Shen等人(2004年)《核酸研究》32卷,158页],短区域DP2(1290 - 1310)似乎具有双重作用,既能形成PhoPolD复合物,又能通过与DP1(1 - 200)相互作用来调节DP1的3'-5'核酸外切酶活性。此外,包含DNA聚合催化残基Asp1122和Asp1124的DP2(792 - 1163)与亚基内结构域DP2(1 - 100)和亚基间结构域DP1(1 - 200)相互作用。DP2(792 - 1163)可能通过这些多重相互作用形成了在DNA聚合催化和PhoPolD复合物稳定中都深度参与的最重要结构域。

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