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唇突变对黑腹果蝇幼虫和成虫胃酸分泌细胞的发育、结构和功能的不同影响。

Differential effects of a labial mutation on the development, structure, and function of stomach acid-secreting cells in Drosophila melanogaster larvae and adults.

作者信息

Dubreuil R R, Grushko T, Baumann O

机构信息

Department of Neurobiology, Pharmacology, and Physiology, University of Chicago, IL 60637, USA.

出版信息

Cell Tissue Res. 2001 Oct;306(1):167-78. doi: 10.1007/s004410100422.

Abstract

The differentiation of copper cells, which secrete stomach acid in Drosophila larvae, has been shown previously to be sensitive to the labialk3 mutation. Here we found that stomach acid secretion in adults was insensitive to labk3. The basis for this stage-specific effect was elucidated by characterizing the development, structure, and function of the adult midgut. First, we demonstrated by copper-dependent fluorescence and morphology that copper cells were present in the adult stomach. Fine-structure analysis of adult copper cells led to the identification of a previously unrecognized plasma membrane domain: apicolateral contacts between copper cells and their neighbors consisted of smooth septate junctions that were enriched in alphabeta-spectrin and ankyrin. Second, we demonstrated that adult copper cells were present in labk3/labvd1 (conditional/null) adults. The labial protein was expressed in adult labk3/labvd1 copper cells, but not in larvae. Thus the labk3 mutation had a stage-specific effect on midgut labial expression, but did not appear to affect protein function. Surprisingly, stomach acidification was dispensable during larval development, since labk3/labvd1 mutant larvae that lacked midgut acidification developed into fertile adults.

摘要

在果蝇幼虫中分泌胃酸的铜细胞的分化,先前已被证明对labialk3突变敏感。在此我们发现,成虫的胃酸分泌对labk3不敏感。通过对成虫中肠的发育、结构和功能进行表征,阐明了这种阶段特异性效应的基础。首先,我们通过铜依赖性荧光和形态学证明成虫胃中存在铜细胞。对成虫铜细胞的精细结构分析导致鉴定出一个先前未被识别的质膜结构域:铜细胞与其相邻细胞之间的顶侧接触由富含αβ-血影蛋白和锚蛋白的平滑分隔连接组成。其次,我们证明在labk3/labvd1(条件性/无效)成虫中存在成虫铜细胞。唇蛋白在成虫labk3/labvd1铜细胞中表达,但在幼虫中不表达。因此,labk3突变对中肠唇蛋白表达具有阶段特异性效应,但似乎不影响蛋白质功能。令人惊讶的是,幼虫发育过程中胃酸化是可有可无的,因为缺乏中肠酸化的labk3/labvd1突变幼虫发育成了可育成虫。

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