首页> 外文OA文献 >Controlled Enlargement of the Glycoprotein Vesicle Surrounding a Volvox Embryo Requires the InvB Nucleotide-Sugar Transporter and Is Required for Normal Morphogenesis[W]
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Controlled Enlargement of the Glycoprotein Vesicle Surrounding a Volvox Embryo Requires the InvB Nucleotide-Sugar Transporter and Is Required for Normal Morphogenesis[W]

机译:围绕沃尔沃胚胎的糖蛋白囊泡的可控扩大需要InvB核苷酸糖转运蛋白,并且是正常形态发生所必需的[W]

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摘要

Here, we report our analysis of a mutant of Volvox carteri, InvB, whose embryos fail to execute inversion, the process in which each Volvox embryo normally turns itself inside-out at the end of embryogenesis, thereby achieving the adult configuration. The invB gene encodes a nucleotide-sugar transporter that exhibits GDP-mannose transport activity when expressed in yeast. In wild-type embryos, the invB transcript is maximally abundant before and during inversion. A mannoside probe (fluorescent concanavalin A) stains the glycoprotein-rich gonidial vesicle (GV) surrounding wild-type embryos much more strongly than it stains the GV surrounding InvB embryos. Direct measurements revealed that throughout embryogenesis the GV surrounding a wild-type embryo increases in size much more than the GV surrounding an InvB embryo does, and the fully cleaved InvB embryo is much more tightly packed within its GV than a wild-type embryo is. To test the hypothesis that the restraint imposed by a smaller than normal GV directly causes the inversion defect in the mutant, we released InvB embryos from their GVs microsurgically. The resulting embryos inverted normally, demonstrating that controlled enlargement of the GV, by a process in which requires the InvB nucleotide-sugar transporter, is essential to provide the embryo sufficient space to complete inversion.
机译:在这里,我们报告了我们的Volvox Carteri突变体InvB的分析,该突变体的胚胎无法执行倒转,在此过程中,每个Volvox胚胎通常在胚胎发生结束时自内而外翻转,从而实现了成年配置。 invB基因编码一种核苷酸糖转运蛋白,当在酵母中表达时,该糖转运蛋白具有GDP-甘露糖转运活性。在野生型胚胎中,invB转录本在转化之前和转化过程中最大。甘露糖苷探针(荧光伴刀豆球蛋白A)对围绕野生型胚胎的富含糖蛋白的性腺囊泡(GV)的染色远比对InvB胚胎周围的GV染色的强烈。直接测量显示,在整个胚胎发生过程中,围绕野生型胚胎的GV的大小增加的幅度要远大于围绕InvB胚胎的GV的增长,并且完全裂解的InvB胚胎在其GV中的紧密堆积要比野生型胚胎的紧密得多。为了检验假说,小于正常GV的限制会直接导致突变体的倒位缺陷,我们通过显微手术从InvB胚胎中释放了InvB胚胎。产生的胚胎正常倒转,表明通过需要InvB核苷酸糖转运蛋白的过程控制的GV扩增对于为胚胎提供足够的空间来完成倒转至关重要。

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