Jackson Sean, Sugiman-Marangos Seiji, Cheung Kelvin, Junop Murray
Department of Biochemistry and Biomedical Sciences, McMaster University, 1200 Main Street West, Hamilton, Ontario L8N 3Z5, Canada.
Acta Crystallogr Sect F Struct Biol Cryst Commun. 2011 Mar 1;67(Pt 3):412-6. doi: 10.1107/S174430911005092X. Epub 2011 Feb 25.
Pleckstrin is a major substrate of protein kinase C in platelets and leukocytes and appears to play an important role in exocytosis through a currently unknown mechanism. Pleckstrin function is regulated by phosphorylation, which is thought to cause dissociation of pleckstrin dimers, thereby facilitating phosphoinositide interactions and membrane localization. Evidence also exists suggesting that phosphorylation causes a subtle conformational change in pleckstrin. Structural studies of pleckstrin have been initiated in order to characterize these structural changes and ultimately advance understanding of pleckstrin function. Here, the crystallization and preliminary X-ray diffraction analysis of a truncated version of pleckstrin consisting of the N-terminal PH domain, the protein kinase C phosphorylation sites and the DEP domain (NPHDEP) are reported. In addition, the oligomeric state and phospholipid-binding properties of NPHDEP were analyzed. This work demonstrates that NPHDEP behaves as a monomer in solution and suggests that all three pleckstrin domains contribute to the dimerization interface. Furthermore, based on the binding properties of NPHDEP, the C-terminal PH domain appears to increase the specificity of pleckstrin for phosphoinositides. This work represents a significant step towards determining the structure of pleckstrin.
普列克底物蛋白是血小板和白细胞中蛋白激酶C的主要底物,似乎通过目前未知的机制在胞吐作用中发挥重要作用。普列克底物蛋白的功能受磷酸化调节,磷酸化被认为会导致普列克底物蛋白二聚体解离,从而促进磷酸肌醇相互作用和膜定位。也有证据表明磷酸化会使普列克底物蛋白发生细微的构象变化。为了表征这些结构变化并最终增进对普列克底物蛋白功能的理解,已经开始了对普列克底物蛋白的结构研究。在此,报道了由N端PH结构域、蛋白激酶C磷酸化位点和DEP结构域组成的普列克底物蛋白截短版本(NPHDEP)的结晶及初步X射线衍射分析。此外,还分析了NPHDEP的寡聚状态和磷脂结合特性。这项工作表明NPHDEP在溶液中表现为单体,并表明普列克底物蛋白的所有三个结构域都对二聚化界面有贡献。此外,基于NPHDEP的结合特性,C端PH结构域似乎增加了普列克底物蛋白对磷酸肌醇的特异性。这项工作是确定普列克底物蛋白结构的重要一步。