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Successful Prediction of Substrate-binding Pocket in SLC17 Transporter Sialin

机译:SLC17转运蛋白在SLC17转运蛋白中的底物结合口袋的成功预测

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Secondary active transporters from the SLC17 protein family are required for excitatory and purinergic synaptic transmission, sialic acid metabolism, and renal function, and several members are associated with inherited neurological or metabolic diseases. However, molecular tools to investigate their function or correct their genetic defects are limited or absent. Using structure-activity, homology modeling, molecular docking, and mutagenesis studies, we have located the substrate-binding site of sialin (SLC17A5), a lysosomal sialic acid exporter also recently implicated in exocytotic release of aspartate. Human sialin is defective in two inherited sialic acid storage diseases and is responsible for metabolic incorporation of the dietary nonhuman sialic acid N-glycolylneuraminic acid. We built cytosol-open and lumen-open three-dimensional models of sialin based on weak, but significant, sequence similarity with the glycerol-3-phosphate and fucose permeases from Escherichia coli, respectively. Molecular docking of 31 synthetic sialic acid analogues to both models was consistent with inhibition studies. Narrowing the sialic acid-binding site in the cytosol-open state by two phenylalanine to tyrosine mutations abrogated recognition of the most active analogue without impairing neuraminic acid transport. Moreover, a pilot virtual high-throughput screening of the cytosol-open model could identify a pseudopeptide competitive inhibitor showing >100-fold higher affinity than the natural substrate. This validated model of human sialin and sialin-guided models of other SLC17 transporters should pave the way for the identification of inhibitors, glycoengineering tools, pharmacological chaperones, and fluorescent false neurotransmitters targeted to these proteins.
机译:来自SLC17蛋白质家族的二级活性转运蛋白是兴奋性和嘌呤能突触透射,唾液酸代谢和肾功能,以及几个成员与遗传性神经学或代谢疾病有关。然而,研究其功能或矫正其遗传缺陷的分子工具是有限的或不存在的。使用结构 - 活性,同源性建模,分子对接和诱变研究,我们已经找到了Sialin(SLC17A5)的底物结合位点,溶酶体唾液酸出口商也近最近涉及的外野生释放。人类唾液素在两种遗传型唾液酸储存疾病中有缺陷,并负责膳食非金唾液酸N-甘油酰胺酸的代谢掺入。基于弱,但显着的,与大肠杆菌的甘油-3-磷酸盐和岩藻糖允许,我们基于弱,但显着的序列相似性的唾液素开放和流明的三维模型。 31种合成唾液酸类似物与两种模型的分子对接与抑制研究一致。通过两个苯丙氨酸在酪氨酸突变中缩小细胞溶胶结合位点,以抑制最活跃的类似物的识别而不损害神经碱酸输送。此外,细胞溶胶开放模型的导频虚拟高通量筛选可以鉴定副肽竞争性抑制剂,其显示比天然基质高100倍。这种验证的人类Sialin和Sialin引导型号的其他SLC17运输司机应该为鉴定靶向这些蛋白质的抑制剂,甘油工程,药理伴侣和荧光假神经递质的方法。

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