Vardar D, Chishti A H, Frank B S, Luna E J, Noegel A A, Oh S W, Schleicher M, McKnight C J
Department of Physiology and Biophysics, Boston University School of Medicine, Boston, Massachusetts 02118, USA.
Cell Motil Cytoskeleton. 2002 May;52(1):9-21. doi: 10.1002/cm.10027.
The villin-type "headpiece" domain is a modular motif found at the extreme C-terminus of larger "core" domains in over 25 cytoskeletal proteins in plants and animals. Although headpiece is classified as an F-actin-binding domain, it has been suggested that some expressed fusion-proteins containing headpiece may lack F-actin-binding in vivo. To determine the intrinsic F-actin affinity of headpiece domains, we quantified the F-actin affinity of seven headpiece domains and three N-terminal truncations, under identical in vitro conditions. The constructs are folded and adopt the native headpiece structure. However, they show a wide range of affinities that can be grouped into high, low, and nonspecific-binding categories. Computer models of the structure and charged surface potential of these headpiece domains suggest features important for high F-actin affinity. We conclude that not all headpiece domains are intrinsically F-actin-binding motifs, and suggest that the surface charge distribution may be an important element for F-actin recognition.
绒毛蛋白型“头部”结构域是一种模块化基序,存在于动植物中25种以上细胞骨架蛋白较大“核心”结构域的极端C末端。尽管头部结构域被归类为F-肌动蛋白结合结构域,但有人提出,一些含有头部结构域的表达融合蛋白在体内可能缺乏F-肌动蛋白结合能力。为了确定头部结构域的内在F-肌动蛋白亲和力,我们在相同的体外条件下,对七个头部结构域和三个N端截短体的F-肌动蛋白亲和力进行了量化。构建体折叠并采用天然头部结构。然而,它们表现出广泛的亲和力,可分为高、低和非特异性结合类别。这些头部结构域的结构和带电表面电位的计算机模型表明了对高F-肌动蛋白亲和力重要的特征。我们得出结论,并非所有头部结构域都是内在的F-肌动蛋白结合基序,并表明表面电荷分布可能是F-肌动蛋白识别的重要因素。