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首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >Structural alteration of glycosaminoglycan side chains and spatial disorganization of collagen networks in the skin of patients with mcEDS-CHST14
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Structural alteration of glycosaminoglycan side chains and spatial disorganization of collagen networks in the skin of patients with mcEDS-CHST14

机译:糖胺聚糖侧链的结构改变和MCEX-CHST14患者皮肤胶原蛋白网络的空间紊乱

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Musculocontractural Ehlers-Danlos syndrome (mcEDS) due to CHST14/D4ST1 deficiency (mcEDS-CHST14) is a recently delineated type of EDS caused by biallelic loss-of-function mutations in CHST14, which results in the depletion of dermatan sulfate (DS). Clinical characteristics of mcEDS-CHST14 consist of multiple malformations and progressive fragility-related manifestations, including skin hyperextensibility and fragility. Skin fragility is suspected to result from the impaired assembly of collagen fibrils caused by alteration of the glycosaminoglycan (GAG) chain of decorin-proteoglycan (PG) from DS to chondroitin sulfate (CS). This systematic investigation of the skin pathology of patients with mcEDS-CHST14 comprised both immunostaining of decorin and transmission electron microscopy-based cupromeronic blue staining to visualize GAG chains. Collagen fibrils were dispersed in the affected papillary to reticular dermis; in contrast, they were regularly and tightly assembled in controls. Moreover, the fibrils exhibited a perpendicular arrangement to the affected epidermis, whereas fibrils were parallel to control epidermis. Affected GAG chains were linear, stretching from the outer surface of collagen fibrils to adjacent fibrils; in contrast, those of controls were curved, maintaining close contact with attached collagen fibrils. This is the first observation of compositional alteration, from DS to CS, of GAG side chains, which caused structural alteration of GAG side chains and resulted in spatial disorganization of collagen networks; this presumably disrupted the ring-mesh structure of GAG side chains surrounding collagen fibrils. McEDS-CHST14 provides a critical example of the importance of DS in GAG side chains of decorin-PG during assembly of collagen fibrils in maintenance of connective tissues.
机译:由于CHST14 / D4ST1缺乏(MCEDS-CHST14)是由CHST14中的双曲线功能突变引起的最近描绘型EDS的肌肉肌钙菌综合征(MCERCONTRACTIONS-DANLOS综合征(MCEDS),这导致皮肤硫酸盐(DS)的耗尽。 MCEX-CHST14的临床特征包括多种畸形和渐进式脆弱的表现形式,包括皮肤过度沉降和脆弱性。怀疑皮肤脆性是由通过从DS到软骨素(CS)的DS的糖胺蛋白酶蛋白(PG)的糖胺聚糖(GAG)链的改变引起的胶原蛋白聚糖(GAG)链的组装受损导致胶原蛋白聚糖(GAG)链的组装。这种系统调查MCEX-CHST14患者的皮肤病理论包括菊苣和透射电子显微镜的Cupromeronic蓝染色的免疫抑制,以便可视化GAG链。将胶原蛋白原纤维分散在受影响的乳头状到网状皮肤上;相比之下,它们经常和紧密地组装在控制中。此外,原纤维对受影响的表皮表现出垂直排列,而原纤维与对照表皮平行。受影响的Gag链是线性的,从胶原蛋白原纤维的外表面向相邻的原纤维延伸;相反,控制器的弯曲,维持与连接的胶原纤维的密切接触。这是首次观察组成改变,从GAG侧链的DS到Cs,这导致GAG侧链的结构改变并导致胶原蛋白网络的空间紊乱;这可能会破坏胶原纤维周围的Gag侧链的环网结构。 Mcceds-Chst14提供了在维持结缔组织的胶原蛋白原纤维期间DS在Degin-Pg的Gag侧链中DS的重要性的一个关键例子。

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