Department of Medicine, Division of Nephrology and Hypertension, Vanderbilt University Medical Center, Nashville, TN, USA.
Vanderbilt Center for Matrix Biology, Vanderbilt University Medical Center, Nashville, TN, USA.
Adv Exp Med Biol. 2021;21:129-141. doi: 10.1007/5584_2020_582.
Collagen molecules are crucial extracellular players in animal tissue development and in functions ranging from ultrafiltration to organism locomotion. Among the 28 types of collagen found in human, type IV collagen stands out as a primordial type found in all species of the animal kingdom. Collagen IV forms smart scaffolds for basement membranes, sheet-like acellular structures that isolate, coordinate, and direct cells during morphogenesis. Collagen IV is also involved in multiple functions in developed tissues. As part of the basement membrane, collagen IV scaffolds provide mechanical strength, spatially tether extracellular macromolecules and directly signal to cells via receptor binding sites. Proper assembly and structure of the scaffolds are critical for development and function of multiple types of basement membranes. Within last 5 years it was established that Cl concentration is a key factor for initiating collagen IV scaffold assembly. The biological role of Cl in multiple physiological processes and detailed mechanisms for its signaling and structural impacts are well established. Cl gradients are generated across the plasma and intracellular organelle membranes. As collagen IV molecules are secreted outside the cell, they experience a switch from low to high Cl concentration. This transition works as a trigger for collagen IV scaffold assembly. Within the scaffold, collagen IV remains to be a Cl sensor as its structural integrity continues to depend on Cl concentration. Here, we review recent findings and set future directions for studies on the role of Cl in type IV collagen assembly, function, and disease.
胶原蛋白分子是动物组织发育和功能的重要细胞外成分,其功能范围从超滤到生物体运动。在人类发现的 28 种胶原蛋白中,IV 型胶原蛋白是一种原始类型,存在于动物界的所有物种中。IV 型胶原蛋白为基底膜形成智能支架,基底膜是一种类似薄片的无细胞结构,在形态发生过程中隔离、协调和指导细胞。IV 型胶原蛋白还参与了已发育组织的多种功能。作为基底膜的一部分,胶原蛋白 IV 支架提供机械强度,空间固定细胞外大分子,并通过受体结合位点直接向细胞发出信号。支架的正确组装和结构对于多种基底膜的发育和功能至关重要。在过去的 5 年中,已经确定 Cl 浓度是引发胶原蛋白 IV 支架组装的关键因素。Cl 在多种生理过程中的生物学作用及其信号转导和结构影响的详细机制已经得到很好的证实。Cl 梯度在质膜和细胞内细胞器膜之间产生。由于胶原蛋白 IV 分子在细胞外分泌,它们经历从低 Cl 浓度到高 Cl 浓度的转变。这种转变是胶原蛋白 IV 支架组装的触发因素。在支架内,胶原蛋白 IV 仍然是 Cl 传感器,因为其结构完整性继续依赖于 Cl 浓度。在这里,我们回顾了最近的发现,并为研究 Cl 在 IV 型胶原蛋白组装、功能和疾病中的作用设定了未来的方向。