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疾病致病变异 Ile67Asn 对 BOLA3 蛋白的生化影响。

Biochemical impact of a disease-causing Ile67Asn substitution on BOLA3 protein.

机构信息

Department of Chemistry and Biochemistry, The Ohio State University, 100 West 18th Avenue, Columbus, OH 43210, USA.

The Ohio State Biochemistry Program, The Ohio State University, Columbus, OH 43210, USA.

出版信息

Metallomics. 2021 Apr 14;13(4). doi: 10.1093/mtomcs/mfab010.

DOI:10.1093/mtomcs/mfab010
PMID:33693876
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC8046136/
Abstract

Iron-sulfur (Fe-S) cluster biosynthesis involves the action of a variety of functionally distinct proteins, most of which are evolutionarily conserved. Mutations in these Fe-S scaffold and trafficking proteins can cause diseases such as multiple mitochondrial dysfunctions syndrome (MMDS), sideroblastic anemia, and mitochondrial encephalopathy. Herein, we investigate the effect of Ile67Asn substitution in the BOLA3 protein that results in the MMDS2 phenotype. Although the exact functional role of BOLA3 in Fe-S cluster biosynthesis is not known, the [2Fe-2S]-bridged complex of BOLA3 with GLRX5, another Fe-S protein, has been proposed as a viable intermediary cluster carrier to downstream targets. Our investigations reveal that the Ile67Asn substitution impairs the ability of BOLA3 to bind its physiological partner GLRX5, resulting in a failure to form the [2Fe-2S]-bridged complex. Although no drastic structural change in BOLA3 arises from the substitution, as evidenced by wild-type and mutant BOLA3 1H-15N HSQC and ion mobility native mass spectrometry experiments, this substitution appears to influence cluster reconstitution on downstream proteins leading to the disease phenotype. By contrast, substituted derivatives of the holo homodimeric form of BOLA3 are formed and remain active toward cluster exchange.

摘要

铁硫 (Fe-S) 簇生物合成涉及多种功能不同的蛋白质的作用,其中大多数在进化上是保守的。这些 Fe-S 支架和转运蛋白的突变可导致多种线粒体功能障碍综合征 (MMDS)、铁幼粒细胞性贫血和线粒体脑病等疾病。在此,我们研究了导致 MMDS2 表型的 BOLA3 蛋白中 Ile67Asn 取代的影响。尽管 BOLA3 在 Fe-S 簇生物合成中的确切功能作用尚不清楚,但 BOLA3 与另一种 Fe-S 蛋白 GLRX5 之间具有 [2Fe-2S] 桥接复合物的假设是可行的中间簇载体,可向下游靶标传递。我们的研究表明,Ile67Asn 取代会损害 BOLA3 与生理伴侣 GLRX5 结合的能力,导致 [2Fe-2S] 桥接复合物无法形成。尽管 BOLA3 没有因取代而产生剧烈的结构变化,这一点可以从野生型和突变型 BOLA3 的 1H-15N HSQC 和离子淌度 native 质谱实验中得到证明,但这种取代似乎会影响下游蛋白质上的簇再形成,从而导致疾病表型。相比之下,形成了 BOLA3 的全同二聚体形式的取代衍生物,并且仍然对簇交换具有活性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f13/8716074/c3c3384cf847/mfab010gra.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f13/8716074/c3c3384cf847/mfab010gra.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7f13/8716074/c3c3384cf847/mfab010gra.jpg

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本文引用的文献

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FEBS J. 2021 Feb;288(3):920-929. doi: 10.1111/febs.15452. Epub 2020 Jul 2.
2
Characterization of [2Fe-2S]-Cluster-Bridged Protein Complexes and Reaction Intermediates by use of Native Mass Spectrometric Methods.利用天然质谱方法对[2Fe-2S]-簇桥连蛋白复合物和反应中间体进行表征。
Angew Chem Int Ed Engl. 2020 Apr 20;59(17):6724-6728. doi: 10.1002/anie.201915615. Epub 2020 Mar 3.
3
Reconstitution, characterization, and [2Fe-2S] cluster exchange reactivity of a holo human BOLA3 homodimer.
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J Biol Inorg Chem. 2019 Oct;24(7):1035-1045. doi: 10.1007/s00775-019-01713-x. Epub 2019 Sep 5.
4
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An infant case of diffuse cerebrospinal lesions and cardiomyopathy caused by a BOLA3 mutation.一例由BOLA3基因突变引起的弥漫性脑脊髓病变和心肌病的婴儿病例。
Brain Dev. 2018 Jun;40(6):484-488. doi: 10.1016/j.braindev.2018.02.004. Epub 2018 Mar 2.
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