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浅析硫酸软骨素和硫酸乙酰肝素在斑马鱼咽弓软骨形态发生中的作用和调控机制。

On the roles and regulation of chondroitin sulfate and heparan sulfate in zebrafish pharyngeal cartilage morphogenesis.

机构信息

Department of Medical Biochemistry and Microbiology, Science for Life Laboratory, Uppsala University, Uppsala, Sweden.

出版信息

J Biol Chem. 2012 Sep 28;287(40):33905-16. doi: 10.1074/jbc.M112.401646. Epub 2012 Aug 6.

Abstract

The present study addresses the roles of heparan sulfate (HS) proteoglycans and chondroitin sulfate (CS) proteoglycans in the development of zebrafish pharyngeal cartilage structures. uxs1 and b3gat3 mutants, predicted to have impaired biosynthesis of both HS and CS because of defective formation of the common proteoglycan linkage tetrasaccharide were analyzed along with ext2 and extl3 mutants, predicted to have defective HS polymerization. Notably, the effects on HS and CS biosynthesis in the respective mutant strains were shown to differ from what had been hypothesized. In uxs1 and b3gat3 mutant larvae, biosynthesis of CS was shown to be virtually abolished, whereas these mutants still were capable of synthesizing 50% of the HS produced in control larvae. extl3 and ext2 mutants on the other hand were shown to synthesize reduced amounts of hypersulfated HS. Further, extl3 mutants produced higher levels of CS than control larvae, whereas morpholino-mediated suppression of csgalnact1/csgalnact2 resulted in increased HS biosynthesis. Thus, the balance of the Extl3 and Csgalnact1/Csgalnact2 proteins influences the HS/CS ratio. A characterization of the pharyngeal cartilage element morphologies in the single mutant strains, as well as in ext2;uxs1 double mutants, was conducted. A correlation between HS and CS production and phenotypes was found, such that impaired HS biosynthesis was shown to affect chondrocyte intercalation, whereas impaired CS biosynthesis inhibited formation of the extracellular matrix surrounding chondrocytes.

摘要

本研究探讨了肝素硫酸(HS)蛋白聚糖和软骨素硫酸(CS)蛋白聚糖在斑马鱼咽软骨结构发育中的作用。uxs1 和 b3gat3 突变体被预测由于共同蛋白聚糖连接四糖形成缺陷而导致 HS 和 CS 的生物合成受损,与 ext2 和 extl3 突变体一起进行了分析,ext2 和 extl3 突变体被预测 HS 聚合有缺陷。值得注意的是,在各自的突变株中观察到 HS 和 CS 生物合成的影响与假设不同。在 uxs1 和 b3gat3 突变体幼虫中,CS 的生物合成几乎被完全废除,而这些突变体仍能够合成对照幼虫中产生的 HS 的 50%。另一方面,extl3 和 ext2 突变体显示出低水平的高度硫酸化 HS 的合成。此外,extl3 突变体产生的 CS 水平高于对照幼虫,而 Csgalnact1/Csgalnact2 的 morpholino 介导抑制导致 HS 生物合成增加。因此,Extl3 和 Csgalnact1/Csgalnact2 蛋白的平衡影响 HS/CS 比。对单个突变体菌株以及 ext2;uxs1 双突变体的咽软骨元件形态进行了特征描述。发现 HS 和 CS 产生与表型之间存在相关性,即 HS 生物合成受损会影响软骨细胞插入,而 CS 生物合成受损会抑制围绕软骨细胞的细胞外基质的形成。

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