首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Fibulin-4 E57K Knock-in Mice Recapitulate Cutaneous Vascular and Skeletal Defects of Recessive Cutis Laxa 1B with both Elastic Fiber and Collagen Fibril Abnormalities
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Fibulin-4 E57K Knock-in Mice Recapitulate Cutaneous Vascular and Skeletal Defects of Recessive Cutis Laxa 1B with both Elastic Fiber and Collagen Fibril Abnormalities

机译:Fibulin-4 E57K敲入小鼠概括了隐性角质层松弛1B的皮肤血管和骨骼缺陷其中既有弹性纤维又有胶原原纤维异常。

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摘要

Fibulin-4 is an extracellular matrix protein essential for elastic fiber formation. Frameshift and missense mutations in the fibulin-4 gene (EFEMP2/FBLN4) cause autosomal recessive cutis laxa (ARCL) 1B, characterized by loose skin, aortic aneurysm, arterial tortuosity, lung emphysema, and skeletal abnormalities. Homozygous missense mutations in FBLN4 are a prevalent cause of ARCL 1B. Here we generated a knock-in mouse strain bearing a recurrent fibulin-4 E57K homozygous missense mutation. The mutant mice survived into adulthood and displayed abnormalities in multiple organ systems, including loose skin, bent forelimb, aortic aneurysm, tortuous artery, and pulmonary emphysema. Biochemical studies of dermal fibroblasts showed that fibulin-4 E57K mutant protein was produced but was prone to dimer formation and inefficiently secreted, thereby triggering an endoplasmic reticulum stress response. Immunohistochemistry detected a low level of fibulin-4 E57K protein in the knock-in skin along with altered expression of selected elastic fiber components. Processing of a precursor to mature lysyl oxidase, an enzyme involved in cross-linking of elastin and collagen, was compromised. The knock-in skin had a reduced level of desmosine, an elastin-specific cross-link compound, and ultrastructurally abnormal elastic fibers. Surprisingly, structurally aberrant collagen fibrils and altered organization into fibers were characteristics of the knock-in dermis and forelimb tendons. Type I collagen extracted from the knock-in skin had decreased amounts of covalent intermolecular cross-links, which could contribute to the collagen fibril abnormalities. Our studies provide the first evidence that fibulin-4 plays a role in regulating collagen fibril assembly and offer a preclinical platform for developing treatments for ARCL 1B.
机译:Fibulin-4是弹性纤维形成必不可少的细胞外基质蛋白。 fibulin-4基因(EFEMP2 / FBLN4)的移码和错义突变导致常染色体隐性角质松弛(ARCL)1B,其特征是皮肤松弛,主动脉瘤,动脉曲折,肺气肿和骨骼异常。 FBLN4中的纯合错义突变是ARCL 1B的普遍原因。在这里,我们生成了带有复发性fibulin-4 E57K纯合错义突变的敲入小鼠品系。突变小鼠存活到成年,并在多个器官系统中表现出异常,包括皮肤松弛,前肢弯曲,主动脉瘤,曲折动脉和肺气肿。皮肤成纤维细胞的生化研究表明,产生了fibulin-4 E57K突变蛋白,但易于形成二聚体且不能有效分泌,从而触发内质网应激反应。免疫组织化学检测到敲入的皮肤中纤维蛋白-4 E57K蛋白水平较低,同时所选弹性纤维成分的表达发生了变化。成熟的赖氨酰氧化酶(一种参与弹性蛋白和胶原蛋白交联的酶)的前体加工受到损害。敲入的皮肤具有降低的去氨水平,弹性蛋白特异性交联化合物和超微结构异常的弹性纤维。出乎意料的是,结构异常的胶原纤维和改变为纤维的组织是敲入的真皮和前肢肌腱的特征。从敲入的皮肤中提取的I型胶原蛋白的共价分子间交联量减少,这可能导致胶原蛋白原纤维异常。我们的研究提供了第一个证据,证明fibulin-4在调节胶原蛋白原纤维装配中起作用,并为开发针对ARCL 1B的治疗方法提供了临床前平台。

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