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首页> 外文期刊>Glycobiology. >Vascular abnormalities in the placenta of Chst 74~7 fetuses: implications in the pathophysiology of perinatal lethality of the murine model and vascular lesions in human CHST14/D4ST1 deficiency
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Vascular abnormalities in the placenta of Chst 74~7 fetuses: implications in the pathophysiology of perinatal lethality of the murine model and vascular lesions in human CHST14/D4ST1 deficiency

机译:CHST 74〜7胎儿胎盘的血管异常:在人CHST14 / D4ST1缺乏中鼠模型和血管病变的围产期致病性的影响

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摘要

Collagen is one of the most important components of the extracellular matrix that is involved in the strength of tissues, cell adhesion and cell proliferation. Mutations in several collagen and post-translational modification enzyme genes cause Ehlers-Danlos syndrome (EDS) characterized by joint and skin hyperextensibility as well as fragility of various organs. Carbohydrate sulfotransfer-ase 14/dermatan 4-O-sulfotransferase-1 (CHST14/D4ST1) is a critical enzyme for biosynthesis of dermatan sulfate, a side chain of various proteoglycans including biglycan that regulates collagen fibrils through their interaction. Mutations in CHST14 were found to cause a new form of EDS, named musculocontractural type EDS (mcEDS-CHST14). Large subcutaneous hematomas are one of the most serious complications accompanied by decreased quality of life and potential lethality. In this study, Chst14 gene-deleted mice were expected to be an animal model of the vascular abnormalities of mcEDS-CHST14. However, only limited numbers of adult mice were generated because of perinatal lethality in most Chst14 gene-deleted homozygote (Chst14~'~) mice. Therefore, we investigated the placentas of these fetuses. The placentas of Chst14~'~ fetuses showed a reduced weight, alterations in the vascular structure, and ischemic and/or necrotic-like changes. Electron microscopy demonstrated an abnormal structure of the basement membrane of capillaries in the pla-cental villus. These findings suggest that Chst14 is essential for placental vascular development and perinatal survival of fetuses. Furthermore, placentas of Chst14~'~ fetuses could be a useful model for vascular manifestations in mcEDS-CHST14, such as the large subcutaneous hematomas.
机译:胶原蛋白是涉及组织,细胞粘附和细胞增殖的强度的细胞外基质中最重要的组分之一。几种胶原和翻译后修饰酶基因中的突变导致Ehlers-Danlos综合征(EDS),其特征在于关节和皮肤过度沉降,以及各种器官的脆弱性。碳水化合物磺酸酯-ASE 14 / Dermatan 4-O-磺基转移酶-1(CHST14 / D4ST1)是皮肤生物合成的临界酶,其各种蛋白质糖糖体的侧链,包括通过它们的相互作用调节胶原蛋白原纤维的大型蛋白。发现CHST14中的突变引起了一种新的EDS,名为Musculocontractural型EDS(MCEDS-CHST14)。大皮下血肿是最严重的并发症之一,伴随着生活质量和潜在的致命性。在该研究中,CHST14基因缺失的小鼠预计是MCEDS-CHST14的血管异常的动物模型。然而,由于大多数CHST14基因缺失的纯合子(CHST14〜'〜)小鼠,因此仅产生有限数量的成年小鼠。因此,我们研究了这些胎儿的胎盘。 CHST14〜'〜胎儿的胎盘表现出减轻的重量,血管结构的变化,缺血性和/或坏死的变化。电子显微镜证明了PLA-中心绒毛中毛细血管基底膜的异常结构。这些发现表明CHST14对于胎盘血管开发和围产期的存活至关重要。此外,CHST14〜'〜胎儿的胎盘可能是MCEDS-CHST14中的血管表现的有用模型,例如大皮下血肿。

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