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人类聚合酶 δ 的 p12 亚基使用非典型的 PIP 盒来识别增殖细胞核抗原(PCNA)。

The p12 subunit of human polymerase δ uses an atypical PIP box for molecular recognition of proliferating cell nuclear antigen (PCNA).

机构信息

From the CIC bioGUNE, Parque Tecnológico de Bizkaia Edificio 800, 48160 Derio, Spain.

the Department of Physical Chemistry and Institute of Biotechnology, Universidad de Granada, Granada 18071, Spain.

出版信息

J Biol Chem. 2019 Mar 15;294(11):3947-3956. doi: 10.1074/jbc.RA118.006391. Epub 2019 Jan 17.

Abstract

Human DNA polymerase δ is essential for DNA replication and acts in conjunction with the processivity factor proliferating cell nuclear antigen (PCNA). In addition to its catalytic subunit (p125), pol δ comprises three regulatory subunits (p50, p68, and p12). PCNA interacts with all of these subunits, but only the interaction with p68 has been structurally characterized. Here, we report solution NMR-, isothermal calorimetry-, and X-ray crystallography-based analyses of the p12-PCNA interaction, which takes part in the modulation of the rate and fidelity of DNA synthesis by pol δ. We show that p12 binds with micromolar affinity to the classical PIP-binding pocket of PCNA via a highly atypical PIP box located at the p12 N terminus. Unlike the canonical PIP box of p68, the PIP box of p12 lacks the conserved glutamine; binds through a 2-fork plug made of an isoleucine and a tyrosine residue at +3 and +8 positions, respectively; and is stabilized by an aspartate at +6 position, which creates a network of intramolecular hydrogen bonds. These findings add to growing evidence that PCNA can bind a diverse range of protein sequences that may be broadly grouped as PIP-like motifs as has been previously suggested.

摘要

人类 DNA 聚合酶 δ 是 DNA 复制所必需的,它与增殖细胞核抗原(PCNA)的持续合成因子协同作用。除了其催化亚基(p125)外,pol δ 还包括三个调节亚基(p50、p68 和 p12)。PCNA 与所有这些亚基相互作用,但只有与 p68 的相互作用已被结构表征。在这里,我们报告了基于 NMR、等温量热法和 X 射线晶体学的 p12-PCNA 相互作用的分析,该相互作用参与了 pol δ 对 DNA 合成速率和保真度的调节。我们表明,p12 通过位于 p12 N 末端的高度非典型 PIP 盒以微摩尔亲和力与 PCNA 的经典 PIP 结合口袋结合。与 p68 的典型 PIP 盒不同,p12 的 PIP 盒缺乏保守的谷氨酰胺;通过 2 叉塞结合,+3 和+8 位分别由异亮氨酸和酪氨酸残基组成;并由+6 位的天冬氨酸稳定,形成分子内氢键网络。这些发现增加了越来越多的证据,表明 PCNA 可以结合广泛的蛋白质序列,这些序列可以大致归类为以前提出的 PIP 样基序。

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