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细菌 Mrp 是一种新型的 Mrp/NBP35 蛋白,参与铁硫生物发生。

The bacterial Mrp is a novel Mrp/NBP35 protein involved in iron-sulfur biogenesis.

机构信息

Aix Marseille Univ, CNRS, LCB, Marseille, France.

Microbial Stress Lab. UCIBIO, REQUIMTE, Department Química, Faculdade de Ciências e Tecnologica, Universidade NOVA de Lisboa, Campus da Caparica, Caparica, 2829-516, Portugal.

出版信息

Sci Rep. 2019 Jan 24;9(1):712. doi: 10.1038/s41598-018-37021-8.

Abstract

Despite recent advances in understanding the biogenesis of iron-sulfur (Fe-S) proteins, most studies focused on aerobic bacteria as model organisms. Accordingly, multiple players have been proposed to participate in the Fe-S delivery step to apo-target proteins, but critical gaps exist in the knowledge of Fe-S proteins biogenesis in anaerobic organisms. Mrp/NBP35 ATP-binding proteins are a subclass of the soluble P-loop containing nucleoside triphosphate hydrolase superfamily (P-loop NTPase) known to bind and transfer Fe-S clusters in vitro. Here, we report investigations of a novel atypical two-domain Mrp/NBP35 ATP-binding protein named Mrp associating a P-loop NTPase domain with a dinitrogenase iron-molybdenum cofactor biosynthesis domain (Di-Nase). Characterization of full length Mrp, as well as of its two domains, showed that both domains bind Fe-S clusters. We provide in vitro evidence that the P-loop NTPase domain of the Mrp can efficiently transfer its Fe-S cluster to apo-target proteins of the ORange Protein (ORP) complex, suggesting that this novel protein is involved in the maturation of these Fe-S proteins. Last, we showed for the first time, by fluorescence microscopy imaging a polar localization of a Mrp/NBP35 protein.

摘要

尽管近年来人们对铁硫 (Fe-S) 蛋白的生物发生有了深入的了解,但大多数研究都集中在好氧细菌作为模式生物。因此,提出了多种参与将 Fe-S 递送到无蛋白靶标的参与者,但在厌氧生物中 Fe-S 蛋白生物发生的知识方面仍存在关键空白。Mrp/NBP35 ATP 结合蛋白是可溶性 P 环含核苷三磷酸水解酶超家族 (P 环 NTPase) 的一个亚类,已知该蛋白在体外结合并转移 Fe-S 簇。在这里,我们报告了对一种新型非典型双域 Mrp/NBP35 ATP 结合蛋白的研究,该蛋白名为 Mrp,它与 P 环 NTPase 结构域与二氮酶铁钼辅因子生物合成结构域 (Di-Nase) 相关联。全长 Mrp 及其两个结构域的特性表明,这两个结构域都能结合 Fe-S 簇。我们提供了体外证据表明,Mrp 的 P 环 NTPase 结构域可以有效地将其 Fe-S 簇转移到 ORP 复合物的 apo 靶蛋白上,这表明这种新型蛋白参与了这些 Fe-S 蛋白的成熟过程。最后,我们首次通过荧光显微镜成像显示了 Mrp/NBP35 蛋白的极性定位。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f72c/6345978/5b464f5b8646/41598_2018_37021_Fig1_HTML.jpg

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