Tilley Sarah J, Skippen Alison, Murray-Rust Judith, Swigart Philip M, Stewart Albert, Morgan Clive P, Cockcroft Shamshad, McDonald Neil Q
School of Crystallography, Birkbeck, University of London, Malet Street, London WC1E 7HX, UK.
Structure. 2004 Feb;12(2):317-26. doi: 10.1016/j.str.2004.01.013.
Phosphatidylinositol transfer protein alpha (PITPalpha) selectively transports and promotes exchange of phosphatidylinositol (PI) and phosphatidylcholine (PC) between lipid bilayers. In higher eukaryotes PITPalpha is required for cellular functions such as phospholipase C-mediated signaling, regulated exocytosis, and secretory vesicle formation. We have determined the crystal structure of human PITPalpha bound to its physiological ligand, PI, at 2.95 A resolution. The structure identifies the critical side chains within the lipid-headgroup binding pocket that define the exquisite specificity for PI. Mutational analysis of the PI binding pocket is in good agreement with the structural data and allows manipulation of functional properties of PITPalpha. Surprisingly, there are no major conformational differences between PI- and PC-loaded PITPalpha, despite previous predictions. In the crystal, PITPalpha-PI is dimeric, with two identical dimers in the asymmetric unit. The dimer interface masks precisely the sequence we identify as contributing to PITPalpha membrane interaction. Our structure represents a soluble, transport-competent form of PI-loaded PITPalpha.
磷脂酰肌醇转移蛋白α(PITPα)可在脂质双层之间选择性地转运并促进磷脂酰肌醇(PI)和磷脂酰胆碱(PC)的交换。在高等真核生物中,PITPα参与细胞功能,如磷脂酶C介导的信号传导、受调控的胞吐作用以及分泌性囊泡的形成。我们已确定人PITPα与其生理配体PI结合时的晶体结构,分辨率为2.95埃。该结构确定了脂质头部基团结合口袋内的关键侧链,这些侧链决定了对PI的高度特异性。对PI结合口袋的突变分析与结构数据高度吻合,且能够对PITPα的功能特性进行操控。令人惊讶的是,尽管之前有预测,但结合PI和PC的PITPα之间并无重大构象差异。在晶体中,PITPα-PI是二聚体,不对称单元中有两个相同的二聚体。二聚体界面恰好掩盖了我们确定为对PITPα膜相互作用有贡献的序列。我们的结构代表了一种结合PI的、具有转运能力的可溶性PITPα形式。