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导致果蝇胚胎早期发育停滞或背化的突变nudel等位基因的生化缺陷。

Biochemical defects of mutant nudel alleles causing early developmental arrest or dorsalization of the Drosophila embryo.

作者信息

LeMosy E K, Leclerc C L, Hashimoto C

机构信息

Department of Cell Biology, Yale University School of Medicine, New Haven, Connecticut 06520, USA.

出版信息

Genetics. 2000 Jan;154(1):247-57. doi: 10.1093/genetics/154.1.247.

Abstract

The nudel gene of Drosophila is maternally required both for structural integrity of the egg and for dorsoventral patterning of the embryo. It encodes a structurally modular protein that is secreted by ovarian follicle cells. Genetic and molecular studies have suggested that the Nudel protein is also functionally modular, with a serine protease domain that is specifically required for ventral development. Here we describe biochemical and immunolocalization studies that provide insight into the molecular basis for the distinct phenotypes produced by nudel mutations and for the interactions between these alleles. Mutations causing loss of embryonic dorsoventral polarity result in a failure to activate the protease domain of Nudel. Our analyses support previous findings that catalytic activity of the protease domain is required for dorsoventral patterning and that the Nudel protease is auto-activated and reveal an important role for a region adjacent to the protease domain in Nudel protease function. Mutations causing egg fragility and early embryonic arrest result in a significant decrease in extracellular Nudel protein, due to defects in post-translational processing, stability, or secretion. On the basis of these and other studies of serine proteases, we suggest potential mechanisms for the complementary and antagonistic interactions between the nudel alleles.

摘要

果蝇的nudel基因对于卵子的结构完整性以及胚胎的背腹模式形成均为母体所需。它编码一种由卵巢滤泡细胞分泌的结构模块化蛋白质。遗传学和分子学研究表明,Nudel蛋白在功能上也是模块化的,其丝氨酸蛋白酶结构域对于腹侧发育是特别必需的。在此,我们描述了生物化学和免疫定位研究,这些研究为nudel突变产生的不同表型以及这些等位基因之间的相互作用的分子基础提供了深入见解。导致胚胎背腹极性丧失的突变会导致无法激活Nudel的蛋白酶结构域。我们的分析支持了先前的研究结果,即蛋白酶结构域的催化活性对于背腹模式形成是必需的,并且Nudel蛋白酶是自我激活的,同时揭示了Nudel蛋白酶功能中与蛋白酶结构域相邻区域的重要作用。导致卵子易碎和早期胚胎停滞的突变会导致细胞外Nudel蛋白显著减少,这是由于翻译后加工、稳定性或分泌方面的缺陷所致。基于对丝氨酸蛋白酶的这些及其他研究,我们提出了nudel等位基因之间互补和拮抗相互作用的潜在机制。

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