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结构研究将HypB无序的N端延伸与大肠杆菌中HypB和SlyD的活性联系起来。

Structural investigations connect the disordered N-terminal extension of HypB to the activities of HypB and SlyD in E. coli.

作者信息

Law Wayne W H, Pichugin Dmitry, Muhandiram Ranjith, Zamble Deborah B, Kanelis Voula

机构信息

Department of Chemistry, University of Toronto, Toronto, Ontario, Canada.

Department of Chemical and Physical Sciences, University of Toronto Mississauga, Mississauga, Ontario, Canada.

出版信息

Protein Sci. 2025 Aug;34(8):e70231. doi: 10.1002/pro.70231.

Abstract

The activities of [NiFe]-hydrogenase enzymes, which are critical to many microbes, require insertion of a Ni(II) ion into the bimetallic catalytic center. Delivery of Ni(II) to [NiFe]-hydrogenases depends, in part, on the metallochaperone HypB, which lies at the center of a Ni(II) transfer pathway that includes the metal storage protein SlyD and the metallochaperone HypA. SlyD is a source of Ni(II) ions for HypB, whereas Ni(II) from HypB is transferred to HypA. In this work, we examine how the intrinsically disordered N-terminal extension (NTE) of HypB modulates the action of the HypB GTPase domain (G-domain). The NTE contains a high-affinity Ni(II) binding site, while the G-domain contains a lower affinity Ni(II) binding site that is affected by binding of guanine nucleotides. The HypB G-domain is also affected by SlyD and provides Ni(II) to HypA. Our NMR data show that, although disordered, the HypB NTE possesses residual structure and makes transient interactions with the HypB G-domain and with SlyD. A set of common residues in the center of the NTE are affected by SlyD and G-domain binding, and also by binding of Ni(II) to the high-affinity site located at the N terminus of the protein. The NTE interacts with residues in or near the Ni(II)- and GDP-binding sites in the G-domain, which are also affected when SlyD binds the NTE. Thus, the data showcase a complex interaction network between HypB and SlyD, and provide molecular details regarding how the HypB NTE links the activities of the HypB G-domain and SlyD.

摘要

[NiFe]氢化酶的活性对许多微生物至关重要,其活性需要将Ni(II)离子插入双金属催化中心。Ni(II)向[NiFe]氢化酶的传递部分依赖于金属伴侣蛋白HypB,HypB位于包括金属储存蛋白SlyD和金属伴侣蛋白HypA的Ni(II)转移途径的中心。SlyD是HypB的Ni(II)离子来源,而HypB中的Ni(II)则转移至HypA。在这项研究中,我们研究了HypB的内在无序N端延伸(NTE)如何调节HypB GTPase结构域(G结构域)的作用。NTE包含一个高亲和力的Ni(II)结合位点,而G结构域包含一个受鸟嘌呤核苷酸结合影响的较低亲和力的Ni(II)结合位点。HypB G结构域也受SlyD影响,并将Ni(II)提供给HypA。我们的核磁共振数据表明,尽管HypB NTE是无序的,但它具有残余结构,并与HypB G结构域和SlyD进行瞬时相互作用。NTE中心的一组常见残基受SlyD和G结构域结合的影响,也受Ni(II)与位于蛋白质N端的高亲和力位点结合的影响。NTE与G结构域中Ni(II)和GDP结合位点内或附近的残基相互作用,当SlyD结合NTE时这些残基也会受到影响。因此,这些数据展示了HypB和SlyD之间复杂的相互作用网络,并提供了关于HypB NTE如何连接HypB G结构域和SlyD活性的分子细节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4117/12284835/2e88cd620ae7/PRO-34-e70231-g003.jpg

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