Mechanoprotection by skeletal muscle caveolae

H. Lo, T. Hall, R. Parton
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引用次数: 23

Abstract

abstract Caveolae, small bulb-like pits, are the most abundant surface feature of many vertebrate cell types. The relationship of the structure of caveolae to their function has been a subject of considerable scientific interest in view of the association of caveolar dysfunction with human disease. In a recent study Lo et al.1 investigated the organization and function of caveolae in skeletal muscle. Using quantitative 3D electron microscopy caveolae were shown to be predominantly organized into multilobed structures which provide a large reservoir of surface-connected membrane underlying the sarcolemma. These structures were preferentially disassembled in response to changes in membrane tension. Perturbation or loss of caveolae in mouse and zebrafish models suggested that caveolae can protect the muscle sarcolemma against damage in response to excessive membrane activity. Flattening of caveolae to release membrane into the bulk plasma membrane in response to increased membrane tension can allow cell shape changes and prevent membrane rupture. In addition, disassembly of caveolae can have widespread effects on lipid-based plasma membrane organization. These findings suggest that the ability of the caveolar membrane system to respond to mechanical forces is a crucial evolutionarily-conserved process which is compromised in disease conditions associated with mutations in key caveolar components.
骨骼肌小泡的机械保护作用
小泡,球状的小坑,是许多脊椎动物细胞类型中最丰富的表面特征。鉴于空泡功能障碍与人类疾病的关系,空泡结构与其功能的关系一直是一个相当有科学意义的主题。在最近的一项研究中,Lo等人研究了骨骼肌小窝的组织和功能。使用定量三维电子显微镜显示,小泡主要组织成多叶结构,在肌膜下面提供了一个大的表面连接膜库。随着膜张力的变化,这些结构被优先分解。小鼠和斑马鱼模型中小泡的扰动或缺失表明,小泡可以保护肌膜免受过度膜活性的损伤。随着膜张力的增加,小泡变平,将膜释放到大质膜中,可以使细胞形状发生变化,防止膜破裂。此外,小泡的解体可以对基于脂质的质膜组织产生广泛的影响。这些发现表明,腔泡膜系统对机械力的响应能力是一个关键的进化保守过程,在与关键腔泡成分突变相关的疾病条件下受到损害。
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