Tompa Peter
VIB Department of Structural Biology; Vrije Universiteit Brussel; Brussels, Belgium.
Institute of Enzymology; Research Centre for Natural Sciences; Hungarian Academy of Sciences; Budapest, Hungary.
Intrinsically Disord Proteins. 2013 Jan 1;1(1):e24068. doi: 10.4161/idp.24068. eCollection 2013 Jan-Dec.
Based on high-voltage electron microscopic (HVEM) data of fixed cultured cells, an elaborate three-dimensional network of filaments, including and interconnecting other elements of the cytoskeleton, was observed in cells some half a century ago. Despite many attempts and comparative studies, this "microtrabecular lattice" (MTL) of the cytoplasmic ground substance could not be established as a genuine component of the eukaryotic cell, and is mostly considered today as a sample-preparation artifact of protein adherence and cross-linking to the cytoskeleton. Here we elaborate on the provocative idea that recent observations of hydrogel-forming phase transitions of repetitive regions of intrinsically disordered proteins (IDPs) bear resemblance in creation, organization and physical appearance to the MTL. We review this phenomenon in detail, and suggest that phase transitions of actin regulatory proteins, neurofilament side-arms and other proteins could generate non-uniform spatial distribution of cytoplasmic material in the vicinity of the cytoskeleton that might even give rise to fixation phenomena resembling the MTL. Whether such hydrogel formation by IDPs is a general physical phenomenon, will remain to be seen, nevertheless, the underlying organizational principle provokes novel experimental studies to uncover the ensuing higher-level regulation of cell physiology, in which the despised and long-forgotten concept of MTL might give some interesting leads.
基于固定培养细胞的高压电子显微镜(HVEM)数据,大约半个世纪前在细胞中观察到了一个精细的三维细丝网络,该网络包含细胞骨架的其他成分并将它们相互连接。尽管进行了许多尝试和比较研究,但细胞质基质的这种“微梁晶格”(MTL)尚未被确立为真核细胞的真正组成部分,如今大多被认为是蛋白质附着并交联到细胞骨架上的样本制备假象。在此,我们详细阐述一个引人深思的观点:近期关于内在无序蛋白质(IDP)重复区域形成水凝胶相变的观察结果,在形成、组织和物理外观上与MTL有相似之处。我们详细回顾了这一现象,并提出肌动蛋白调节蛋白、神经丝侧臂及其他蛋白质的相变可能会在细胞骨架附近产生细胞质物质的非均匀空间分布,甚至可能导致类似于MTL的固定现象。IDP形成的这种水凝胶是否是一种普遍的物理现象,还有待观察,然而,其潜在的组织原则激发了新的实验研究,以揭示随之而来的细胞生理学更高层次的调控,其中被轻视且早已被遗忘的MTL概念可能会提供一些有趣的线索。