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瞬态动力学揭示了中性氨基酸转运蛋白 ASCT2 竞争性抑制的作用机制。

Transient kinetics reveal the mechanism of competitive inhibition of the neutral amino acid transporter ASCT2.

机构信息

Department of Chemistry, Binghamton University, Binghamton, New York, USA.

Department of Chemistry, Binghamton University, Binghamton, New York, USA.

出版信息

J Biol Chem. 2024 Jun;300(6):107382. doi: 10.1016/j.jbc.2024.107382. Epub 2024 May 17.

Abstract

ASCT2 (alanine serine cysteine transporter 2), a member of the solute carrier 1 family, mediates Na-dependent exchange of small neutral amino acids across cell membranes. ASCT2 was shown to be highly expressed in tumor cells, making it a promising target for anticancer therapies. In this study, we explored the binding mechanism of the high-affinity competitive inhibitor L-cis hydroxyproline biphenyl ester (Lc-BPE) with ASCT2, using electrophysiological and rapid kinetic methods. Our investigations reveal that Lc-BPE binding requires one or two Na ions initially bound to the apo-transporter with high affinity, with Na1 site occupancy being more critical for inhibitor binding. In contrast to the amino acid substrate bound form, the final, third Na ion cannot bind, due to distortion of its binding site (Na2), thus preventing the formation of a translocation-competent complex. Based on the rapid kinetic analysis, the application of Lc-BPE generated outward transient currents, indicating that despite its net neutral nature, the binding of Lc-BPE in ASCT2 is weakly electrogenic, most likely because of asymmetric charge distribution within the amino acid moiety of the inhibitor. The preincubation with Lc-BPE also led to a decrease of the turnover rate of substrate exchange and a delay in the activation of substrate-induced anion current, indicating relatively slow Lc-BPE dissociation kinetics. Overall, our results provide new insight into the mechanism of binding of a prototypical competitive inhibitor to the ASCT transporters.

摘要

ASCT2(丙氨酰-丝氨酰-半胱氨酸转运体 2)是溶质载体家族 1 的成员,介导 Na 依赖性细胞内外小分子中性氨基酸交换。ASCT2 在肿瘤细胞中高表达,使其成为癌症治疗的有希望的靶点。在这项研究中,我们使用电生理和快速动力学方法研究了高亲和力竞争性抑制剂 L-顺式羟基脯氨酸联苯酯(Lc-BPE)与 ASCT2 的结合机制。我们的研究表明,Lc-BPE 结合需要最初与 apo-转运体高亲和力结合的一个或两个 Na 离子,Na1 位点占据对于抑制剂结合更为关键。与氨基酸底物结合形式不同,由于其结合位点(Na2)的扭曲,最终的第三个 Na 离子不能结合,从而阻止形成具有转运能力的复合物。基于快速动力学分析,Lc-BPE 的应用产生外向瞬变电流,表明尽管 Lc-BPE 具有净中性性质,但在 ASCT2 中的结合是弱电生性的,这很可能是因为抑制剂的氨基酸部分内的电荷分布不对称。Lc-BPE 的预孵育也导致底物交换的周转率降低和底物诱导的阴离子电流的激活延迟,表明 Lc-BPE 的解离动力学相对较慢。总的来说,我们的结果为典型竞争性抑制剂与 ASCT 转运蛋白结合的机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/33d8/11193019/1548bb22078b/gr1.jpg

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