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Comprehensive Endogenous Tagging of Basement Membrane Components Reveals Dynamic Movement within the Matrix Scaffolding

机译:综合内源性地下膜组件的标记揭示了基质脚手架内的动态运动

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Basement membranes (BMs) are supramolecular matrices built on laminin and type IV collagen networks that provide structural and signaling support to tissues. BM complexity, however, has hindered an understanding of its formation, dynamics, and regulation. Using genome editing, we tagged 29 BM matrix components and receptors in C. elegans with mNeonGreen. Here, we report a common template that initiates BM formation, which rapidly diversifies during tissue differentiation. Through photobleaching studies, we show that BMs are not static-surprisingly, many matrix proteins move within the laminin and collagen scaffoldings. Finally, quantitative imaging, conditional knockdown, and optical highlighting indicate that papilin, a poorly studied glycoprotein, is the most abundant component in the gonadal BM, where it facilitates type IV collagen removal during BM expansion and tissue growth. Together, this work introduces methods for holistic investigation of BM regulation and reveals that BMs are highly dynamic and capable of rapid change to support tissues.
机译:基底膜(BMS)是在层蛋白和IV型胶原网络上的超分子基质,其为组织提供结构和信号支持。然而,BM复杂性阻碍了理解其形成,动态和监管。使用基因组编辑,我们用MneOngreen标记了29个BM矩阵组分和C.杆状杆子的受体。在这里,我们报告了一个常见的模板,该模板发起BM形成,在组织分化期间快速多元化。通过光漂白研究,我们表明BMS不是静态令人惊讶的是,许多基质蛋白质在层蛋白和胶原屑脚手架内移动。最后,定量成像,条件敲低和光学突出显示表明,猪仔宾语是一种较差的糖蛋白,是糖蛋白中最丰富的组分,其中促进了在BM膨胀和组织生长期间促进IV型胶原蛋白去除。在一起,这项工作介绍了对BM规则的整体调查的方法,并揭示了BMS高度动态,能够快速变化,以支持组织。

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