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果蝇幼虫外骨骼的组装需要顶端质膜的受控分泌和塑形。

Assembly of the Drosophila larval exoskeleton requires controlled secretion and shaping of the apical plasma membrane.

作者信息

Moussian Bernard, Veerkamp Justus, Müller Ursula, Schwarz Heinz

机构信息

Max-Planck-Institut für Entwicklungsbiologie, Abteilung Genetik Spemannstr. 35, D-72076 Tübingen, Germany.

出版信息

Matrix Biol. 2007 Jun;26(5):337-47. doi: 10.1016/j.matbio.2007.02.001. Epub 2007 Feb 22.

Abstract

The apical plasma membrane of epithelial cells plays a central role in producing and shaping the apical extracellular matrix (aECM) that eventually adopts a stereotypic architecture required for the physical and physiological needs of the epithelium. To assess the implication of the apical plasma membrane on aECM differentiation, we have studied the function of the apical plasma membrane t-SNARE Syntaxin 1A in the embryo of the fruit fly Drosophila melanogaster during differentiation of the stratified exoskeleton, the cuticle, which is composed of proteins and the polysaccharide chitin. The cuticle layers of syntaxin1A deficient larvae are rudimentary. Consistently, Syntaxin 1A is required for the secretion of O-glycosylated proteins and components involved in pigmentation and protein cross-linking. By contrast, localization of chitin synthesis and organising proteins to the apical plasma membrane or to the extracellular space does not depend on Syntaxin 1A activity. However, chitin microfibrils have a random orientation instead of being arranged in parallel. This correlates with the lack of corrugations at the apical plasma membrane of epidermal cells, the apical undulae that have been proposed to be crucial for chitin microfibril orientation. Hence, Syntaxin 1A contributes to cuticle differentiation by controlling correct apical plasma membrane topology as well as mediating secretion of a subset of extracellular proteins required for layer organisation. Our data also indicate that yet another unidentified t-SNARE is needed in parallel to Syntaxin 1A to deliver extracellular material for complete cuticle assembly. Evidently, coordination of apical membrane modelling and two secretion routes are essential for stereotypic aECM organisation.

摘要

上皮细胞的顶端质膜在产生和塑造顶端细胞外基质(aECM)中起着核心作用,该基质最终形成上皮组织物理和生理需求所需的定型结构。为了评估顶端质膜对aECM分化的影响,我们研究了顶端质膜t-SNARE Syntaxin 1A在果蝇胚胎分层外骨骼(即由蛋白质和多糖几丁质组成的表皮)分化过程中的功能。Syntaxin1A缺陷幼虫的表皮层发育不全。一致地,Syntaxin 1A是O-糖基化蛋白以及参与色素沉着和蛋白质交联的成分分泌所必需的。相比之下,几丁质合成和组织蛋白定位于顶端质膜或细胞外空间并不依赖于Syntaxin 1A的活性。然而,几丁质微纤维具有随机取向,而不是平行排列。这与表皮细胞顶端质膜上缺乏波纹有关,顶端波纹被认为对几丁质微纤维取向至关重要。因此,Syntaxin 1A通过控制正确的顶端质膜拓扑结构以及介导层组织所需的细胞外蛋白子集的分泌来促进表皮分化。我们的数据还表明,除了Syntaxin 1A之外,还需要另一种未鉴定的t-SNARE来输送细胞外物质以完成表皮组装。显然,顶端膜建模和两条分泌途径协调对于定型aECM组织至关重要。

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