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细胞外基质糖胺聚糖在体外和组织中的超分子组织

Supramolecular organization of extracellular matrix glycosaminoglycans, in vitro and in the tissues.

作者信息

Scott J E

机构信息

Chemical Morphology, Manchester University, United Kingdom.

出版信息

FASEB J. 1992 Jun;6(9):2639-45.

PMID:1612287
Abstract

Connective tissues maintain shape against external and internal stress. They are molecular hierarchies in which fundamental building units come together in tiers of increasing complexity and mutual interactions, based on information carried in the precursor molecules secreted by cells. The collagen fibril is the end product of well-understood self-aggregation controlled by its amino acid sequences, but the interfibrillar amorphous ground substance has not hitherto been seen as structured by analogous aggregations prescribed by the primary structures of the characteristic glycosaminoglycans dissolved therein. Transmission electron microscopy with morphometry and stereology has demonstrated their existence in tissues. Nuclear magnetic resonance defined their secondary structures, rotary shadowing electron microscopy delineated their aggregates in vitro, and molecular dynamics stimulations showed how the latter can spring from the former. The driving forces to aggregation are hydrophobic and hydrogen bonding, offset by electrostatic repulsion between polyanionic charges. The relative stabilities of the aggregates are determined by this balance, and hence by the position and number of their charges, particularly the sulfate ester groups. Corneal stroma is a system of collagen fibrils, highly ordered to ensure transparency, in which glycosaminoglycan aggregates are suggested to determine the ordered spacing as yardsticks in a way that has parallels in all connective tissues.

摘要

结缔组织能抵御外部和内部压力以维持形态。它们是分子层级结构,其中基本构建单元基于细胞分泌的前体分子所携带的信息,以越来越复杂且相互作用的层级形式聚集在一起。胶原纤维是由其氨基酸序列控制的、已被充分理解的自我聚集的最终产物,但纤维间无定形基质迄今尚未被视为由溶解在其中的特征性糖胺聚糖的一级结构所规定的类似聚集形成结构。结合形态测量学和体视学的透射电子显微镜已证明它们在组织中的存在。核磁共振确定了它们的二级结构,旋转阴影电子显微镜描绘了它们在体外的聚集体,分子动力学模拟展示了后者如何从前者产生。聚集的驱动力是疏水作用和氢键作用,被多阴离子电荷之间的静电排斥所抵消。聚集体的相对稳定性由这种平衡决定,因此由其电荷的位置和数量决定,特别是硫酸酯基团。角膜基质是一个胶原纤维系统,高度有序以确保透明度,其中糖胺聚糖聚集体被认为以一种在所有结缔组织中都有类似情况的方式作为标尺来确定有序间距。

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