Pang Yilin, Wang Jing, Gao Xueping, Jiang Mengyao, Zhu Lifei, Liang Feng, Liang Mengxiang, Wu Xiaolin, Xu Xianxian, Ren Xiaojun, Xie Ting, Wang Wu, Sun Qianqian, Xiong Xiaojun, Lyu Jianxin, Li Jianghui, Tan Guoqiang
Zhejiang Provincial Key Laboratory of Medical Genetics, Key Laboratory of Laboratory Medicine, Ministry of Education, School of Laboratory Medicine and Life Sciences, Wenzhou Medical University, Wenzhou, Zhejiang, China.
Hunan Animal Pharmaceutical Company, Hunan Agricultural Group Company, Hunan Agricultural Development & Investment Group Company, Wangcheng Economic and Technological Development Zone, Changsha, Hunan, China.
Front Microbiol. 2023 Feb 16;14:1084205. doi: 10.3389/fmicb.2023.1084205. eCollection 2023.
cysteine desulfurase (CD), IscS, modifies basal metabolism by transferring sulphur (S) from L-cysteine to numerous cellular pathways, whereas NFS1, a human CD, is active only in the formation of the [Acp]:[ISD11]:[NFS1] complex. Despite the accumulation of red-coloured IscS in cells as a result of the deficiency of accessible iron, as revealed in our previous studies, the mechanism of the potential enzymatic reaction remains unclear. In this study, the N-terminus of IscS was fused with the C-terminus of NFS1, which was reported to be almost fully active as IscS and exhibits a pyridoxal 5'-phosphate (PLP) absorption peak at 395 nm. Moreover, SUMO-EH-IscS exhibited significant growth recovery and NADH-dehydrogenase I activity in the mutant cells. Furthermore, through and experiments combined with high-performance liquid chromatography and ultra-performance liquid chromatography-tandem mass spectrometry, it was shown that the new absorption peaks of the IscS H104Q, IscS Q183E, IscS K206A, and IscS K206A&C328S variants at 340 and 350 nm may correspond to the enzyme reaction intermediates, Cys-ketimine and Cys-aldimine, respectively. However, after mutation of the conserved active-site residues, additional absorption peaks at 420 and 430 nm were associated with PLP migration in the active-site pocket. Additionally, the corresponding absorption peaks of Cys-quinonoid, Ala-ketimine, and Ala-aldimine intermediates in IscS were 510, 325, and 345 nm, respectively, as determined by site-directed mutagenesis and substrate/product-binding analyses during the CD reaction process. Notably, red IscS formed by incubating IscS variants (Q183E and K206A) with excess L-alanine and sulphide under aerobic conditions produced an absorption peak similar to the wild-type IscS, at 510 nm. Interestingly, site-directed mutation of IscS with hydrogen bonds to PLP at Asp180 and Gln183 resulted in a loss of enzymatic activity followed by an absorption peak consistent with NFS1 (420 nm). Furthermore, mutations at Asp180 or Lys206 inhibited the reaction of IscS with L-cysteine (substrate) and L-alanine (product). These results suggest that the conserved active site residues (His104, Asp180, and Gln183) and their hydrogen bond with PLP in the N-terminus of IscS play a key role in determining whether the L-cysteine substrate can enter the active-site pocket and regulate the enzymatic reaction process. Therefore, our findings provide a framework for evaluating the roles of conserved active-site residues, motifs, and domains in CDs.
半胱氨酸脱硫酶(CD)IscS通过将硫(S)从L-半胱氨酸转移到众多细胞途径中来改变基础代谢,而人类CD NFS1仅在[Acp]:[ISD11]:[NFS1]复合物的形成中具有活性。正如我们之前的研究所揭示的,尽管由于可利用铁的缺乏,红色的IscS在细胞中积累,但潜在酶促反应的机制仍不清楚。在本研究中,IscS的N末端与NFS1的C末端融合,据报道NFS1几乎具有与IscS完全相同的活性,并在395nm处呈现磷酸吡哆醛(PLP)吸收峰。此外,SUMO-EH-IscS在突变细胞中表现出显著的生长恢复和NADH脱氢酶I活性。此外,通过实验以及结合高效液相色谱和超高效液相色谱-串联质谱的实验表明,IscS H104Q、IscS Q183E、IscS K206A和IscS K206A&C328S变体在340和350nm处的新吸收峰可能分别对应于酶反应中间体半胱氨酸-酮亚胺和半胱氨酸-醛亚胺。然而,在保守活性位点残基发生突变后,420和430nm处的额外吸收峰与PLP在活性位点口袋中的迁移有关。此外,通过定点诱变以及在CD反应过程中的底物/产物结合分析确定,IscS中半胱氨酸-醌类、丙氨酸-酮亚胺和丙氨酸-醛亚胺中间体的相应吸收峰分别为510、325和345nm。值得注意的是,在有氧条件下将IscS变体(Q183E和K206A)与过量的L-丙氨酸和硫化物孵育形成的红色IscS在510nm处产生了与野生型IscS相似的吸收峰。有趣的是,在IscS中与PLP形成氢键的天冬氨酸180和谷氨酰胺183进行定点突变导致酶活性丧失,随后出现与NFS1一致的吸收峰(420nm)。此外,天冬氨酸180或赖氨酸206处的突变抑制了IscS与L-半胱氨酸(底物)和L-丙氨酸(产物)的反应。这些结果表明,IscS N末端中保守的活性位点残基(组氨酸104、天冬氨酸180和谷氨酰胺183)及其与PLP的氢键在决定L-半胱氨酸底物是否能够进入活性位点口袋并调节酶促反应过程中起关键作用。因此,我们的研究结果为评估CD中保守活性位点残基、基序和结构域的作用提供了一个框架。