Cytoskeleton Dynamics and Cell Motility group, CNRS Gif-sur-Yvette, France.
Int Rev Cell Mol Biol. 2011;290:55-85. doi: 10.1016/B978-0-12-386037-8.00005-3.
The WASP-homology 2 (WH2) domain is a 5-kDa actin-binding protein module that attracts increasing interest by its multifunctional regulation of actin dynamics in motile and morphogenetic processes. Identified by a short consensus sequence LKKT/V originally found in the actin-sequestering ß-thymosin peptides, the ßT/WH2 domains are inserted in a large number of proteins, in particular, the WASP proteins involved in cell protrusions. WH2 are found in tandem repeats in proteins involved in early development and axis-patterning processes, like Spire and Cordon-Bleu. These intrinsically disordered proteins regulate actin assembly in an adaptive and versatile fashion by a fine control of local interaction dynamics within the WH2-actin complex. Versatility is amplified by the protein environment in which the WH2 domain is inserted and by synergy with other adjacent actin-binding modules. Multifunctional activities emerge in WH2 repeats, including filament nucleation, dramatic severing, and barbed end capping or tracking. WH2 domains thus are instrumental in designing customized actin regulators.
WASP 同源结构域 2(WH2)是一个 5kDa 的肌动蛋白结合蛋白模块,通过在运动和形态发生过程中对肌动蛋白动力学的多功能调节,引起了越来越多的关注。最初在肌动蛋白隔离 ß-胸腺肽肽中发现的短共有序列 LKKT/V 识别出 ßT/WH2 结构域插入了大量蛋白质中,特别是参与细胞突起的 WASP 蛋白。WH2 结构域在早期发育和轴模式形成过程中涉及的蛋白质中串联重复出现,如 Spire 和 Cordon-Bleu。这些固有无序的蛋白质通过精细控制 WH2-肌动蛋白复合物内的局部相互作用动力学,以灵活多变的方式调节肌动蛋白组装。多功能活性出现在 WH2 重复中,包括细丝成核、剧烈切割、以及带刺端盖帽或跟踪。因此,WH2 结构域在设计定制的肌动蛋白调节剂方面具有重要作用。