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固氮酶催化辅因子的分子分选

Molecular sorting of nitrogenase catalytic cofactors.

作者信息

Salinero-Lanzarote Alvaro, Lian Josh, Namkoong Gil, Suess Daniel L M, Rubio Luis M, Dean Dennis R, Pérez-González Ana

机构信息

Centro de Biotecnología y Genómica de Plantas, Universidad Politécnica de Madrid (UPM), Instituto Nacional de Investigación y Tecnología Agraria y Alimentaria (INIA-CSIC), Campus Montegancedo UPM, Pozuelo de Alarcón, 28223, Madrid, Spain.

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, MA 02139, USA.

出版信息

bioRxiv. 2025 Jan 21:2025.01.21.634024. doi: 10.1101/2025.01.21.634024.

Abstract

The free-living diazotroph produces three genetically distinct but functionally and mechanistically similar nitrogenase isozymes, designated as Mo-dependent, V-dependent, and Fe-only. They respectively harbor nearly identical catalytic cofactors that are distinguished by a heterometal site occupied by Mo (FeMo-cofactor), V (FeV-cofactor), or Fe (FeFe-cofactor). Completion of FeMo-cofactor and FeV-cofactor formation occurs on molecular scaffolds prior to delivery to their catalytic partners. In contrast, completion of FeFe-cofactor assembly occurs directly within its cognate catalytic partner. Because hybrid nitrogenase species that contain the incorrect cofactor type cannot reduce N to support diazotrophic growth there must be a way to prevent misincorporation of an incorrect cofactor when different nitrogenase isozyme systems are produced at the same time. Here, we show that fidelity of the Fe-only nitrogenase is preserved by blocking the misincorporation of either FeMo-cofactor or FeV-cofactor during its maturation. This protection is accomplished by a two-domain protein, designated AnfO. It is shown that the N-terminal domain of AnfO binds to an immature form of the Fe-only nitrogenase and the C-terminal domain, tethered to the N-terminal domain by a flexible linker, has the capacity to capture FeMo- and FeV-cofactor. AnfO does not prevent the normal activation of Fe-only nitrogenase because completion of FeFe-cofactor assembly occurs within its catalytic partner and, therefore, is never available for capture by AnfO. These results support a post-translational mechanism involving the molecular sorting of structurally similar metallocofactors that involve both protein-protein interactions and metallocofactor binding while exploiting differential pathways for nitrogenase associated catalytic cofactor assembly.

摘要

自由生活的固氮生物产生三种基因上不同但功能和机制上相似的固氮酶同工酶,分别称为钼依赖型、钒依赖型和仅含铁型。它们分别含有几乎相同的催化辅因子,这些辅因子通过钼(铁钼辅因子)、钒(铁钒辅因子)或铁(铁铁辅因子)占据的异金属位点来区分。铁钼辅因子和铁钒辅因子的形成在分子支架上完成,然后传递给它们的催化伙伴。相比之下,铁铁辅因子的组装直接在其同源催化伙伴内完成。由于含有错误辅因子类型的杂合固氮酶物种不能还原N以支持固氮生长,因此当同时产生不同的固氮酶同工酶系统时,必须有一种方法来防止错误辅因子的错误掺入。在这里,我们表明仅含铁固氮酶的保真度通过在其成熟过程中阻止铁钼辅因子或铁钒辅因子的错误掺入来保持。这种保护是由一种双结构域蛋白AnfO完成的。结果表明,AnfO的N末端结构域与仅含铁固氮酶的未成熟形式结合,而通过柔性接头与N末端结构域相连的C末端结构域具有捕获铁钼辅因子和铁钒辅因子的能力。AnfO不会阻止仅含铁固氮酶的正常激活,因为铁铁辅因子的组装在其催化伙伴内完成,因此AnfO无法捕获。这些结果支持了一种翻译后机制,该机制涉及结构相似的金属辅因子的分子分选,这涉及蛋白质-蛋白质相互作用和金属辅因子结合,同时利用固氮酶相关催化辅因子组装的不同途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2053/11785038/76f6aa944397/nihpp-2025.01.21.634024v1-f0001.jpg

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