BMP-9和BMP-10中链间二硫键形成的分子基础。

IF 4.7 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of Molecular Biology Pub Date : 2025-01-08 DOI:10.1016/j.jmb.2025.168935
Tristin A. Schwartze , Stefanie A. Morosky , Teresa L. Rosato , Amy Henrickson , Guowu Lin , Cynthia S. Hinck , Alexander B. Taylor , Shaun K. Olsen , Guillermo Calero , Borries Demeler , Beth L. Roman , Andrew P. Hinck
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引用次数: 0

摘要

BMP-9和BMP-10是TGF-β家族天然分泌到血液中的信号配体。它们作用于内皮细胞,是血管系统正常发育和维持所必需的。在遗传性出血性毛细血管扩张中,由于BMP-9/10通路的突变,即I型受体ALK1或协同受体内啡肽的突变,调节被破坏。已经证明,BMP-9/10异二聚体是血液中最丰富的信号物种,但尚不清楚它们是如何形成的。与TGF-β家族的其他配体不同,BMP-9和bmp -10以二硫连接的二聚体和单体的混合物分泌,其中链间半胱氨酸(Cys-392)保持未配对或配对。在这里,我们发现这些单体以半胱氨酸化的形式分泌,结晶为非共价二聚体。尽管如此,单体在微摩尔或更低的浓度下不能自缔合,与二硫化物连接的二聚体相比,其信号效力降低。我们进一步使用蛋白质晶体学表明,BMP-9同型二聚体的链间二硫化物采用高度应变的顺平面构象。因此,跨二硫链的几何应变是导致不常见的二硫链间键形成的原因,而不是半胱氨酸化。此外,我们发现BMP-9中链间二硫键的形成比BMP-10少,这些频率可以通过交换链间二硫附近的残基来逆转,这些残基与相反的原聚物形成吸引相互作用。最后,我们讨论了这些观察结果对BMP-9/10异源二聚体形成的影响。
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Molecular Basis of Interchain Disulfide Bond Formation in BMP-9 and BMP-10
BMP-9 and BMP-10 are TGF-β family signaling ligands naturally secreted into blood. They act on endothelial cells and are required for proper development and maintenance of the vasculature. In hereditary hemorrhagic telangiectasia, regulation is disrupted due to mutations in the BMP-9/10 pathway, namely in the type I receptor ALK1 or the co-receptor endoglin. It has been demonstrated that BMP-9/10 heterodimers are the most abundant signaling species in the blood, but it is unclear how they form. Unlike other ligands of the TGF-β family, BMP-9 and -10 are secreted as a mixture of disulfide-linked dimers and monomers, in which the interchain cysteine (Cys-392) remains either paired or unpaired. Here, we show that the monomers are secreted in a cysteinylated form that crystallizes as a non-covalent dimer. Despite this, monomers do not self-associate at micromolar or lower concentrations and have reduced signaling potency compared to disulfide-linked dimers. We further show using protein crystallography that the interchain disulfide of the BMP-9 homodimer adopts a highly strained syn-periplanar conformation. Hence, geometric strain across the interchain disulfide is responsible for infrequent interchain disulfide bond formation, not the cysteinylation. Additionally, we show that interchain disulfide bond formation occurs less in BMP-9 than BMP-10 and these frequencies can be reversed by swapping residues near the interchain disulfide that form attractive interactions with the opposing protomer. Finally, we discuss the implications of these observations on BMP-9/10 heterodimer formation.
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来源期刊
Journal of Molecular Biology
Journal of Molecular Biology 生物-生化与分子生物学
CiteScore
11.30
自引率
1.80%
发文量
412
审稿时长
28 days
期刊介绍: Journal of Molecular Biology (JMB) provides high quality, comprehensive and broad coverage in all areas of molecular biology. The journal publishes original scientific research papers that provide mechanistic and functional insights and report a significant advance to the field. The journal encourages the submission of multidisciplinary studies that use complementary experimental and computational approaches to address challenging biological questions. Research areas include but are not limited to: Biomolecular interactions, signaling networks, systems biology; Cell cycle, cell growth, cell differentiation; Cell death, autophagy; Cell signaling and regulation; Chemical biology; Computational biology, in combination with experimental studies; DNA replication, repair, and recombination; Development, regenerative biology, mechanistic and functional studies of stem cells; Epigenetics, chromatin structure and function; Gene expression; Membrane processes, cell surface proteins and cell-cell interactions; Methodological advances, both experimental and theoretical, including databases; Microbiology, virology, and interactions with the host or environment; Microbiota mechanistic and functional studies; Nuclear organization; Post-translational modifications, proteomics; Processing and function of biologically important macromolecules and complexes; Molecular basis of disease; RNA processing, structure and functions of non-coding RNAs, transcription; Sorting, spatiotemporal organization, trafficking; Structural biology; Synthetic biology; Translation, protein folding, chaperones, protein degradation and quality control.
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