首页> 外文期刊>Nucleic Acids Research >PCNA stimulates catalysis by structure-specific nucleases using two distinct mechanisms: substrate targeting and catalytic step
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PCNA stimulates catalysis by structure-specific nucleases using two distinct mechanisms: substrate targeting and catalytic step

机译:PCNA使用两种不同的机制通过结构特异性核酸酶刺激催化作用:底物靶向和催化步骤

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摘要

The sliding clamp Proliferating Cell Nuclear Antigen (PCNA) functions as a recruiter and organizer of a wide variety of DNA modifying enzymes including nucleases, helicases, polymerases and glycosylases. The 5'-flap endonuclease Fen-1 is essential for Okazaki fragment processing in eukaryotes and archaea, and is targeted to the replication fork by PCNA. Crenarchaeal XPF, a 3'-flap endonuclease, is also stimulated by PCNA in vitro. Using a novel continuous fluorimetric assay, we demonstrate that PCNA activates these two nucleases by fundamentally different mechanisms. PCNA stimulates Fen-1 by increasing the enzyme's binding affinity for substrates, as suggested previously. However, PCNA activates XPF by increasing the catalytic rate constant by four orders of magnitude without affecting the K(M). PCNA may function as a platform upon which XPF exerts force to distort DNA substrates, destabilizing the substrate and/or stabilizing the transition state structure. This suggests that PCNA can function directly in supporting catalysis as an essential cofactor in some circumstances, a new role for a protein that is generally assumed to perform a passive targeting and organizing function in molecular biology. This could provide a mechanism for the exquisite control of nuclease activity targeted to specific circumstances, such as replication forks or damaged DNA with pre-loaded PCNA.
机译:滑动夹具增殖细胞核抗原(PCNA)充当各种DNA修饰酶(包括核酸酶,解旋酶,聚合酶和糖基化酶)的募集者和组织者。 5'-襟翼核酸内切酶Fen-1对于真核生物和古生菌中冈崎片段的加工至关重要,并且被PCNA靶向复制叉。 Crenarchaeal XPF,一种3'-瓣内切核酸酶,在体外也受到PCNA的刺激。使用新颖的连续荧光测定法,我们证明PCNA通过根本不同的机制激活这两个核酸酶。如前所述,PCNA通过增加酶对底物的结合亲和力来刺激Fen-1。但是,PCNA通过将催化速率常数增加四个数量级来激活XPF,而不影响K(M)。 PCNA可以用作XPF在其上施加力以扭曲DNA底物,破坏底物和/或稳定过渡态结构的平台。这表明PCNA在某些情况下可以直接作为必需的辅因子支持催化作用,这是一种蛋白质的新作用,通常认为该蛋白质在分子生物学中具有被动靶向和组织功能。这可以为针对特定情况(如复制叉或预装PCNA的DNA受损)提供精确控制核酸酶活性的机制。

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