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HAX1 依赖性的线粒体蛋白稳态控制粒细胞分化。

HAX1-dependent control of mitochondrial proteostasis governs neutrophil granulocyte differentiation.

机构信息

Department of Pediatrics, Dr. von Hauner Children's Hospital and Gene Center, University Hospital, Ludwig-Maximilians-Universität (LMU), Munich, Germany.

Department of Proteomics and Signal Transduction, Max Planck Institute of Biochemistry, Martinsried, Germany.

出版信息

J Clin Invest. 2022 May 2;132(9). doi: 10.1172/JCI153153.

Abstract

The relevance of molecular mechanisms governing mitochondrial proteostasis to the differentiation and function of hematopoietic and immune cells is largely elusive. Through dissection of the network of proteins related to HCLS1-associated protein X-1, we defined a potentially novel functional CLPB/HAX1/(PRKD2)/HSP27 axis with critical importance for the differentiation of neutrophil granulocytes and, thus, elucidated molecular and metabolic mechanisms underlying congenital neutropenia in patients with HAX1 deficiency as well as bi- and monoallelic mutations in CLPB. As shown by stable isotope labeling by amino acids in cell culture (SILAC) proteomics, CLPB and HAX1 control the balance of mitochondrial protein synthesis and persistence crucial for proper mitochondrial function. Impaired mitochondrial protein dynamics are associated with decreased abundance of the serine-threonine kinase PRKD2 and HSP27 phosphorylated on serines 78 and 82. Cellular defects in HAX1-/- cells can be functionally reconstituted by HSP27. Thus, mitochondrial proteostasis emerges as a critical molecular and metabolic mechanism governing the differentiation and function of neutrophil granulocytes.

摘要

调控线粒体蛋白稳态的分子机制与造血和免疫细胞的分化和功能的相关性在很大程度上难以捉摸。通过对与 HCLS1 相关蛋白 X-1 相关蛋白网络的剖析,我们定义了一个潜在的新的功能性 CLPB/HAX1/(PRKD2)/HSP27 轴,对于中性粒细胞粒细胞的分化至关重要,从而阐明了 HAX1 缺陷患者以及 CLPB 双等位基因和单等位基因突变患者中先天性中性粒细胞减少症的分子和代谢机制。正如细胞培养物中氨基酸稳定同位素标记(SILAC)蛋白质组学所示,CLPB 和 HAX1 控制着线粒体蛋白质合成和维持的平衡,这对于适当的线粒体功能至关重要。线粒体蛋白质动力学受损与丝氨酸-苏氨酸激酶 PRKD2 和丝氨酸 78 和 82 磷酸化的 HSP27 的丰度降低有关。HAX1-/-细胞中的细胞缺陷可以通过 HSP27 进行功能重建。因此,线粒体蛋白稳态成为调控中性粒细胞粒细胞分化和功能的关键分子和代谢机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b5e3/9057593/213dbfaa8a62/jci-132-153153-g104.jpg

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