Malinina Lucy, Malakhova Margarita L, Kanack Alex T, Lu Min, Abagyan Ruben, Brown Rhoderick E, Patel Dinshaw J
Structural Biology Program, Memorial Sloan-Kettering Cancer Center, New York, New York, United States of America.
PLoS Biol. 2006 Nov;4(11):e362. doi: 10.1371/journal.pbio.0040362.
Glycosphingolipids (GSLs) play major roles in cellular growth and development. Mammalian glycolipid transfer proteins (GLTPs) are potential regulators of cell processes mediated by GSLs and display a unique architecture among lipid binding/transfer proteins. The GLTP fold represents a novel membrane targeting/interaction domain among peripheral proteins. Here we report crystal structures of human GLTP bound to GSLs of diverse acyl chain length, unsaturation, and sugar composition. Structural comparisons show a highly conserved anchoring of galactosyl- and lactosyl-amide headgroups by the GLTP recognition center. By contrast, acyl chain chemical structure and occupancy of the hydrophobic tunnel dictate partitioning between sphingosine-in and newly-observed sphingosine-out ligand-binding modes. The structural insights, combined with computed interaction propensity distributions, suggest a concerted sequence of events mediated by GLTP conformational changes during GSL transfer to and/or from membranes, as well as during GSL presentation and/or transfer to other proteins.
糖鞘脂(GSLs)在细胞生长和发育中起主要作用。哺乳动物糖脂转移蛋白(GLTPs)是由GSLs介导的细胞过程的潜在调节因子,在脂质结合/转移蛋白中呈现独特的结构。GLTP折叠代表外周蛋白中一种新型的膜靶向/相互作用结构域。在此,我们报道了与不同酰基链长度、不饱和度和糖组成的GSLs结合的人GLTP的晶体结构。结构比较显示,GLTP识别中心对半乳糖基和乳糖基酰胺头部基团具有高度保守的锚定作用。相比之下,酰基链化学结构和疏水通道的占据情况决定了鞘氨醇在内和新观察到的鞘氨醇在外配体结合模式之间的分配。这些结构见解,结合计算出的相互作用倾向分布,表明在GSL转移到膜和/或从膜转移过程中,以及在GSL呈递和/或转移到其他蛋白质过程中,由GLTP构象变化介导的一系列协同事件。