State Key Laboratory of Physical Chemistry of Solid Surfaces and Fujian Provincial Key Laboratory of Theoretical and Computational Chemistry, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen, 361005, China.
Institute of Chemistry, The Hebrew University of Jerusalem, Jerusalem, 9190401, Israel.
Angew Chem Int Ed Engl. 2021 Sep 6;60(37):20430-20436. doi: 10.1002/anie.202107008. Epub 2021 Aug 11.
The [4Fe-4S]-dependent radical S-adenosylmethionine (SAM) proteins is one of large families of redox enzymes that are able to carry a panoply of challenging transformations. Despite the extensive studies of structure-function relationships of radical SAM (RS) enzymes, the electronic state-dependent reactivity of the [4Fe-4S] cluster in these enzymes remains elusive. Using combined MD simulations and QM/MM calculations, we deciphered the electronic state-dependent reactivity of the [4Fe-4S] cluster in Dph2, a key enzyme involved in the biosynthesis of diphthamide. Our calculations show that the reductive cleavage of the S-C bond is highly dependent on the electronic structure of [4Fe-4S]. Interestingly, the six electronic states can be classified into a low-energy and a high-energy groups, which are correlated with the net spin of Fe4 atom ligated to SAM. Due to the driving force of Fe4-C bonding, the net spin on the Fe4 moiety dictate the shift of the opposite spin electron from the Fe1-Fe2-Fe3 block to SAM. Such spin-regulated electron transfer results in the exchange-enhanced reactivity in the lower-energy group compared with those in the higher-energy group. This reactivity principle provides fundamental mechanistic insights into reactivities of [4Fe-4S] cluster in RS enzymes.
依赖[4Fe-4S]的自由基 S-腺苷甲硫氨酸(SAM)蛋白是能够进行多种挑战性转化的一大类氧化还原酶之一。尽管对自由基 SAM(RS)酶的结构-功能关系进行了广泛的研究,但这些酶中[4Fe-4S]簇的电子态依赖性反应性仍然难以捉摸。通过结合 MD 模拟和 QM/MM 计算,我们揭示了参与二氢叶酸酰胺生物合成的关键酶 Dph2 中[4Fe-4S]簇的电子态依赖性反应性。我们的计算表明,S-C 键的还原裂解高度依赖于[4Fe-4S]的电子结构。有趣的是,这六个电子态可以分为低能组和高能组,这与与 SAM 配位的 Fe4 原子的净自旋相关。由于 Fe4-C 键的驱动力,Fe4 部分上的净自旋决定了来自 Fe1-Fe2-Fe3 块的相反自旋电子向 SAM 的转移。这种自旋调控的电子转移导致在较低能组中比在较高能组中具有更高的反应性。这种反应性原理为 RS 酶中[4Fe-4S]簇的反应性提供了基本的机制见解。