Parry David A D
Institute of Fundamental Sciences, Massey University, Palmerston North 5301, New Zealand.
Adv Protein Chem. 2005;70:113-42. doi: 10.1016/S0065-3233(05)70005-X.
A large number of intermediate filament (IF) chains have now been sequenced. From these data, it has been possible to deduce the main elements of the secondary structure, especially those lying within the central rod domain of the molecule. These conclusions, allied to results obtained from crosslinking studies, have shown that at least four unique but related structures are adopted by the class of structures known generically as intermediate filaments: (1) epidermal and reduced trichocyte keratin; (2) oxidized trichocyte keratin; (3) desmin, vimentin, neurofilaments, and related Type III and IV proteins; and (4) lamin molecules. It would be expected that local differences in sequences of the proteins in these four groups would occur, and that this would ultimately relate to assembly. Site-directed mutagenesis and theoretical methods have now made it possible to investigate these ideas further. In particular, new data have been obtained that allow the role played by some individual amino acids or a short stretch of sequence to be determined. Among the observations catalogued here are the key residues involved in intra- and interchain ionic interactions, as well as those involved in stabilizing some modes of molecular aggregation; the structure and role of subdomains in the head and tail domains; the repeat sequences occurring along the length of the chain and their structural significance; trigger motifs in coiled-coil segments; and helix initiation and termination motifs that terminate the rod domain. Much more remains to be done, not least of which is gaining an increased understanding of the many subtle differences that exist between different IF chains at the sequence level.
现在已经对大量中间丝(IF)链进行了测序。根据这些数据,已经能够推断出二级结构的主要元素,特别是那些位于分子中央杆状结构域内的元素。这些结论与交联研究获得的结果相结合,表明一般被称为中间丝的结构类别至少采用了四种独特但相关的结构:(1)表皮和还原毛母细胞角蛋白;(2)氧化毛母细胞角蛋白;(3)结蛋白、波形蛋白、神经丝以及相关的III型和IV型蛋白质;(4)核纤层蛋白分子。预计这四组蛋白质的序列会存在局部差异,并且这最终会与组装相关。定点诱变和理论方法现在使得能够进一步研究这些想法。特别是,已经获得了新的数据,这些数据使得能够确定一些单个氨基酸或一小段序列所起的作用。在此编录的观察结果包括参与链内和链间离子相互作用的关键残基,以及参与稳定某些分子聚集模式的残基;头部和尾部结构域中亚结构域的结构和作用;沿着链的长度出现的重复序列及其结构意义;卷曲螺旋段中的触发基序;以及终止杆状结构域的螺旋起始和终止基序。还有许多工作有待完成,其中最重要的是要更多地了解不同IF链在序列水平上存在的许多细微差异。