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纤连蛋白-3中的一系列半胱氨酸突变突出了其二硫键结合的复杂性以及诱导内质网应激的可能性。

A spectrum of cysteine mutations in fibulin-3 highlight its disulfide bonding complexity and potential to induce ER stress.

作者信息

Collier Gracen E, Roovers Anna L, Hulleman John D

机构信息

Department of Ophthalmology, University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd, Dallas, TX, 75390, USA.

Department of Ophthalmology and Visual Neurosciences, University of Minnesota, 2001 6th St. SE, Minneapolis, MN, 55455, USA.

出版信息

Sci Rep. 2025 Aug 16;15(1):30028. doi: 10.1038/s41598-025-14561-4.

Abstract

Fibulin-3 (FBLN3), also known as EFEMP1, is a secreted extracellular matrix (ECM) glycoprotein that contains forty cysteine residues. These cysteines, which are distributed across one atypical and five canonical calcium-binding epidermal growth factor (EGF) domains, are important for regulating FBLN3 structure, secretion, and presumably function. As evidence of this importance, a rare homozygous p.C55R mutation in FBLN3 negates its function, alters disulfide bonding, and causes marfanoid syndrome. Additional studies suggest that heterozygous premature stop codon mutations in FBLN3 may also cause similar, albeit less severe, connective tissue disorders. Interestingly, a series of twenty-four cysteine mutations in FBLN3 have been identified in the human population and published in the Clinical Variation (ClinVar) and gnomAD databases. We tested how seven of these cysteine mutants (five loss-of-cysteine variants: C42Y, C190R, C218R, C252F, and C365S, two gain-of-cysteine variants: R358C, Y369C) and two newly-developed mutations (G57C and Y397C) altered FBLN3 secretion and disulfide bonding. We selected three variants to test alterations in MMP2 zymography and stress response activation. Surprisingly, we found a wide variety of biochemical behaviors: i) loss-of-cysteine variants correlated with an increased likelihood of disulfide dimer formation, ii) N-terminal mutations were less likely to disrupt secretion, and were less prone to aggregation, iii) in contrast to wild-type FBLN3, multiple, but not all variants failed to induce MMP2 levels in cell culture, and iv) C-terminal mutations (either loss or gain of cysteines) were more prone to significant secretion defects, intracellular accumulation/misfolding, and stress response activation. These results provide molecular and biochemical insight into FBLN3 folding, secretion, and function for many cysteine mutations found in the human population, some of which may increase the likelihood of subclinical connective tissue or other FBLN3-associated haploinsufficiency diseases.

摘要

纤连蛋白-3(FBLN3),也被称为EFEMP1,是一种分泌型细胞外基质(ECM)糖蛋白,含有40个半胱氨酸残基。这些半胱氨酸分布在一个非典型和五个典型的钙结合表皮生长因子(EGF)结构域中,对调节FBLN3的结构、分泌以及可能的功能都很重要。作为这种重要性的证据,FBLN3中一种罕见的纯合p.C55R突变使其功能丧失,改变了二硫键,并导致类马凡氏综合征。其他研究表明,FBLN3中的杂合性过早终止密码子突变也可能导致类似的、尽管不太严重的结缔组织疾病。有趣的是,在人类群体中已经鉴定出一系列24种FBLN3的半胱氨酸突变,并发表在临床变异(ClinVar)和gnomAD数据库中。我们测试了其中7种半胱氨酸突变体(5种半胱氨酸缺失变体:C42Y、C190R、C218R、C252F和C365S,2种半胱氨酸增加变体:R358C、Y369C)以及两种新开发的突变(G57C和Y397C)如何改变FBLN3的分泌和二硫键。我们选择了3种变体来测试MMP2酶谱分析和应激反应激活的变化。令人惊讶的是,我们发现了各种各样的生化行为:i)半胱氨酸缺失变体与二硫键二聚体形成增加的可能性相关;ii)N端突变不太可能破坏分泌,也不太容易聚集;iii)与野生型FBLN3相比,多个但并非所有变体在细胞培养中未能诱导MMP2水平;iv)C端突变(半胱氨酸的缺失或增加)更容易出现明显的分泌缺陷、细胞内积累/错误折叠以及应激反应激活。这些结果为人类群体中发现的许多半胱氨酸突变的FBLN3折叠、分泌和功能提供了分子和生化方面的见解,其中一些突变可能增加亚临床结缔组织或其他FBLN3相关单倍体不足疾病的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/25ad/12357890/e83b0626acb8/41598_2025_14561_Fig1_HTML.jpg

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