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Structural studies on desmosomes

机译:DESMOSOMES的结构研究

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Desmosomes are cadherin-based intercellular junctions that primarily provide mechanical stability to tissues such as epithelia and cardiac muscle. Desmosomal cadherins, which are Ca~(2+)-dependent adhesion molecules, are of central importance in mediating direct intercellular interaction. The close association of these proteins, with intracellular components of desmosomes ultimately linked to the cytoskeleton, is believed to play an important role in tissue morphogenesis during development and wound healing. Elucidation of the binding mechanism of adhesive interfaces between the extracellular domains of cadherins has been approached by structural, biophysical and biochemical methods. X-ray crystal structures of isolated extracellular domains of cadherins have provided compelling evidence of the mutual binding of the highly conserved N-terminal residue, Trp2, from opposing proteins. This binding interface was also implicated by biochemical and cell-adhesion assays and mutagenesis data to be the primary adhesive interface between cells. Recent results based on electron tomography of epidermal desmosomes were consistent with this view, showing cadherin molecules interacting at their N-terminal tips. An integrative structural approach involving X-ray crystallography, cryo-electron tomography and immuno-electron microscopy should give the complete picture of the architecture of this important junction; identifying its various proteins and showing their arrangements and binding interfaces under native conditions. Together with these 'static' approaches, live-cell imaging of cultured keratinocytes should provide important insights into the dynamic property of the assembly and disassembly of desmosomes.
机译:去脱臼是基于钙粘蛋白的细胞间隙,主要为上皮和心肌等组织提供机械稳定性。依赖于Ca〜(2 +)依赖性粘附分子的去染色钙丝蛋白在介导直接细胞间相互作用方面具有核心重要性。这些蛋白质的密切关联,据认为,在脑骨架上最终连接到细胞骨架的细胞内部件,在发育和伤口愈合过程中在组织形态发生中起重要作用。通过结构,生物物理和生物化学方法接近钙粘蛋白细胞外域之间的粘合剂界面的结合机理。嗜吲哚蛋白的分离细胞外域的X射线晶体结构已经提供了令人信服的证据,该令人难以置信的是高度保守的N-末端残留物TRP2对方蛋白质的互联网。该结合界面也通过生物化学和细胞粘附测定和诱变数据来涉及为细胞之间的主要粘合剂界面。基于表皮脱皮的电子断层扫描的最近结果与该视图一致,显示在其N-末端尖端处相互作用的钙粘蛋白分子。一种涉及X射线晶体,冷冻电子断层扫描和免疫电子显微镜的一体化结构方法,应给出这个重要交界的架构的完整图像;鉴定其各种蛋白质并在天然条件下显示它们的布置和结合界面。与这些“静态”方法一起,培养的角质形成细胞的活细胞成像应提供重要的见解,进入大会的动态特性和脱臼的脱臼。

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