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成骨不全症 10 型和常见免疫性疾病的细胞支架。

Osteogenesis imperfecta type 10 and the cellular scaffolds underlying common immunological diseases.

机构信息

InsideOutBio, 42 8th Street, Charlestown, MA, USA.

出版信息

Genes Immun. 2024 Aug;25(4):265-276. doi: 10.1038/s41435-024-00277-4. Epub 2024 May 29.

DOI:10.1038/s41435-024-00277-4
PMID:38811682
Abstract

Osteogenesis imperfecta type 10 (OI10) is caused by loss of function codon variants in the gene SERPINH1 that encodes heat shock protein 47 (HSP47), rather than in a gene specifying bone formation. The HSP47 variants disrupt the folding of both collagen and the endonuclease IRE1α (inositol-requiring enzyme 1α) that splices X-Box Binding Protein 1 (XBP1) mRNA. Besides impairing bone development, variants likely affect osteoclast differentiation. Three distinct biochemical scaffold play key roles in the differentiation and regulated cell death of osteoclasts. These scaffolds consist of non-templated protein modifications, ordered lipid arrays, and protein filaments. The scaffold components are specified genetically, but assemble in response to extracellular perturbagens, pathogens, and left-handed Z-RNA helices encoded genomically by flipons. The outcomes depend on interactions between RIPK1, RIPK3, TRIF, and ZBP1 through short interaction motifs called RHIMs. The causal HSP47 nonsynonymous substitutions occur in a novel variant leucine repeat region (vLRR) that are distantly related to RHIMs. Other vLRR protein variants are causal for a variety of different mendelian diseases. The same scaffolds that drive mendelian pathology are associated with many other complex disease outcomes. Their assembly is triggered dynamically by flipons and other context-specific switches rather than by causal, mendelian, codon variants.

摘要

成骨不全症 10 型(OI10)是由编码热休克蛋白 47(HSP47)的基因 SERPINH1 中的功能丧失密码子变异引起的,而不是在指定骨形成的基因中。HSP47 变体破坏了胶原蛋白和内切核酸酶 IRE1α(需要肌醇的酶 1α)的折叠,IRE1α 拼接 X-盒结合蛋白 1(XBP1)mRNA。除了损害骨骼发育外,变体可能还会影响破骨细胞分化。三种不同的生化支架在破骨细胞的分化和调节性细胞死亡中发挥关键作用。这些支架由非模板蛋白修饰、有序的脂质阵列和蛋白丝组成。支架成分在遗传上是指定的,但在受到细胞外扰动、病原体和基因组编码的左手 Z-RNA 螺旋的影响下组装。结果取决于 RIPK1、RIPK3、TRIF 和 ZBP1 之间通过短相互作用基序 RHIM 相互作用。引起 HSP47 非同义取代的原因是在一个新的变异亮氨酸重复区(vLRR)中发生的,该区域与 RHIM 区有较远的关系。其他 vLRR 蛋白变体是各种不同的孟德尔疾病的原因。驱动孟德尔病理学的相同支架与许多其他复杂疾病结果有关。它们的组装是由翻转子和其他特定于上下文的开关动态触发的,而不是由因果、孟德尔、密码子变体触发的。

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