Edwards S D, Keep N H
BBSRC Bloomsbury Centre for Structural Biology and School of Crystallography, Birkbeck College, University of London, Malet Street, London WC1E 7HX, UK.
Biochemistry. 2001 Jun 19;40(24):7061-8. doi: 10.1021/bi010419h.
Moesin binds to a large range of proteins through its N terminal FERM (band 4.1, ezrin, radixin, moesin) domain. In full-length moesin isolated from cells, this binding is masked by binding to the C-terminal domain of moesin (C-ERMAD). Activation takes place by phosphorylation of Thr 558 in the C-ERMAD, which releases the C-ERMAD. A recently determined crystal structure of a noncovalent complex of the FERM and C-ERMAD domains showed for the first time that the structure of the FERM domain consists of three subdomains, each of which is similar to known structures. The structure reported here also contains a unique 47-residue helix pointing away from the FERM domain at the start of the alpha domain, in agreement with secondary structure predictions. Removal of the C-ERMAD does not result in a huge rearrangement of the FERM domain, but comparison with the activated radixin structure shows a consistent set of small changes. Not surprisingly, the exposed C-ERMAD binding area interacts in crystal contacts. More interestingly, a negatively charged peptide binds to the inositol site in a crystal contact and causes a greater conformational change in the structure than inositol.
膜突蛋白通过其N端的FERM(4.1带、埃兹蛋白、根蛋白、膜突蛋白)结构域与多种蛋白质结合。在从细胞中分离出的全长膜突蛋白中,这种结合被膜突蛋白C端结构域(C-ERMAD)的结合所掩盖。通过C-ERMAD中苏氨酸558的磷酸化激活,从而释放C-ERMAD。最近确定的FERM和C-ERMAD结构域非共价复合物的晶体结构首次表明,FERM结构域由三个亚结构域组成,每个亚结构域都与已知结构相似。此处报道的结构在α结构域起始处还包含一个独特的47个残基的螺旋,该螺旋远离FERM结构域,这与二级结构预测一致。去除C-ERMAD不会导致FERM结构域发生巨大重排,但与活化的根蛋白结构比较显示出一系列一致的小变化。不出所料,暴露的C-ERMAD结合区域在晶体接触中相互作用。更有趣的是,一个带负电荷的肽在晶体接触中与肌醇位点结合,并在结构中引起比肌醇更大的构象变化。