Department of Molecular Biophysics and Biochemistry, Yale University, New Haven, Connecticut, 06520.
Protein Sci. 2019 Feb;28(2):439-447. doi: 10.1002/pro.3541. Epub 2018 Dec 11.
Extensive evidence exists that DNA polymerases use two metal ions to catalyze the phosphoryl transfer reaction. Recently, competing evidence emerged, suggesting that a third metal ion, known as MnC, may be involved in catalysis. The binding of MnC was observed in crystal structures of the replication complexes of human polymerase (pol) η, pol β, and pol μ. Its occupancy (q ) in the pol η replication complexes exhibited a strong correlation with the occupancy of the formed product pyrophosphate (q ), i.e., q ∝ q . However, a key piece of information was missing that is needed to distinguish between two possible sequences of events: (i) the chemical reaction occurs first with only two meal ions, followed by the binding of MnC in a "catch-the-product" mode; and (ii) MnC binds first, followed by the chemical reaction with all three metal ions in a "push-the-reaction-forward" mode. Both mechanisms can lead to a strong correlation between q and q . However, q ≤ q in the first scenario, whereas q ≥ q in the second. In this study, an analysis of crystallographic data published recently for pol η complexes shows that the formation of the product pyrophosphate definitely precedes the binding of MnC. Therefore, just like all other DNA polymerases, human pol η employs a two-metal-ion catalytic mechanism. Rather than help to catalyze the reaction, MnC stabilizes the formed product, which remains trapped inside the crystals, before it slowly diffuses out.
大量证据表明,DNA 聚合酶使用两个金属离子来催化磷酸转移反应。最近,出现了相互竞争的证据,表明第三个金属离子 MnC 可能参与催化。在人类聚合酶 (pol) η、pol β 和 pol μ 的复制复合物的晶体结构中观察到了 MnC 的结合。在 pol η 复制复合物中,MnC 的占有率 (q ) 与形成的焦磷酸产物 (q ) 的占有率呈强相关性,即 q∝q 。然而,有一个关键信息缺失,这是区分两种可能的事件序列所必需的:(i) 化学反应首先只发生在两个金属离子上,然后以“捕捉产物”模式结合 MnC;(ii) MnC 首先结合,然后以“推动反应向前”模式与所有三个金属离子发生化学反应。这两种机制都可以导致 q 和 q 之间的强相关性。然而,在第一种情况下,q≤q ,而在第二种情况下,q≥q 。在这项研究中,对最近发表的 pol η 复合物的晶体学数据的分析表明,产物焦磷酸的形成肯定先于 MnC 的结合。因此,就像所有其他 DNA 聚合酶一样,人类 pol η 采用了双金属离子催化机制。MnC 稳定形成的产物,而不是帮助催化反应,在产物缓慢扩散出来之前,产物被困在晶体内部。