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EXT基因家族成员rib-2对线虫的胚胎发育和硫酸乙酰肝素生物合成至关重要。

EXT gene family member rib-2 is essential for embryonic development and heparan sulfate biosynthesis in Caenorhabditis elegans.

作者信息

Morio Hidenori, Honda Yoko, Toyoda Hidenao, Nakajima Mitsunari, Kurosawa Hisashi, Shirasawa Takuji

机构信息

Department of Molecular Gerontology, Tokyo Metropolitan Institute of Gerontology, 35-2 Sakaecho, Itabashi-ku, Tokyo 173-0015, Japan.

出版信息

Biochem Biophys Res Commun. 2003 Feb 7;301(2):317-23. doi: 10.1016/s0006-291x(02)03031-0.

Abstract

EXT gene family members including EXT1, EXT2, and EXTL2 are glycosyltransferases required for heparan sulfate biosynthesis. To examine the biological functions of rib-2, a member of the Caenorhabditis elegans EXT gene family, we generated a mutant worm lacking the rib-2 gene using the UV-TMP method followed by sib-selection. Inactivation of rib-2 alleles induced developmental abnormalities in F2 and F3 homozygous worms, while F1 heterozygotes showed a normal morphology. The F2 homozygous progeny generated from the F1 heterozygous hermaphrodites somehow developed to adult stage but exhibited abnormal characteristics such as developmental delay and egg-laying defects. The F3 homozygous progeny from the F2 homozygous hermaphrodites showed early developmental defects and most of the F3 worms stopped developing during the gastrulation stage. Whole-mount staining analysis for heparan sulfate using Toluidine blue (pH 2.5) revealed a defect of heparan sulfate biosynthesis in the F2 homozygotes. The analysis using fluorometric post-column high-performance liquid chromatography also uncovered reduced production of heparan sulfate in the rib-2 mutant. These results indicate that rib-2 is essential for embryonic development and heparan sulfate biosynthesis in C. elegans.

摘要

包括EXT1、EXT2和EXTL2在内的EXT基因家族成员是硫酸乙酰肝素生物合成所需的糖基转移酶。为了研究秀丽隐杆线虫EXT基因家族成员rib-2的生物学功能,我们采用紫外线-三甲基补骨脂素(UV-TMP)方法并通过同胞选择,培育出了一种缺失rib-2基因的突变体线虫。rib-2等位基因的失活在F2和F3纯合线虫中诱导了发育异常,而F1杂合子表现出正常的形态。由F1杂合雌雄同体产生的F2纯合后代以某种方式发育到成虫阶段,但表现出发育延迟和产卵缺陷等异常特征。来自F2纯合雌雄同体的F3纯合后代表现出早期发育缺陷,并且大多数F3线虫在原肠胚形成阶段停止发育。使用甲苯胺蓝(pH 2.5)对硫酸乙酰肝素进行整体染色分析,结果显示F2纯合子中硫酸乙酰肝素生物合成存在缺陷。使用荧光柱后高效液相色谱法进行的分析也发现rib-2突变体中硫酸乙酰肝素的产量降低。这些结果表明,rib-2对于秀丽隐杆线虫的胚胎发育和硫酸乙酰肝素生物合成至关重要。

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