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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Heterodimerization of y(+)LAT-1 and 4F2hc visualized by acceptor photobleaching FRET microscopy.
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Heterodimerization of y(+)LAT-1 and 4F2hc visualized by acceptor photobleaching FRET microscopy.

机译:y(+)LAT-1和4F2hc的异二聚化通过受体光漂白FRET显微镜观察。

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摘要

y(+)LAT-1 and 4F2hc are the subunits of a transporter complex for cationic amino acids, located mainly in the basolateral plasma membrane of epithelial cells in the small intestine and renal tubules. Mutations in y(+)LAT-1 impair the transport function of this complex and cause a selective aminoaciduria, lysinuric protein intolerance (LPI, OMIM #222700), associated with severe, complex clinical symptoms. The subunits of an active transporter co-localize in the plasma membrane, but the exact process of dimerization is unclear since direct evidence for the assembly of this transporter in intact human cells has not been available. In this study, we used fluorescence resonance energy transfer (FRET) microscopy to investigate the interactions of y(+)LAT-1 and 4F2hc in HEK293 cells expressing y(+)LAT-1 and 4F2hc fused with ECFP or EYFP. FRET was quantified by measuring fluorescence intensity changes in the donor fluorophore (ECFP) after the photobleaching of the acceptor (EYFP). Increased donor fluorescence could be detected throughout the cell, from the endoplasmic reticulum and Golgi complex to the plasma membrane. Therefore, our data prove the interaction of y(+)LAT-1 and 4F2hc prior to the plasma membrane and thus provide evidence for 4F2hc functioning as a chaperone in assisting the transport of y(+)LAT-1 to the plasma membrane.
机译:y(+)LAT-1和4F2hc是阳离子氨基酸转运蛋白复合物的亚基,主要位于小肠和肾小管上皮细胞的基底外侧质膜中。 y(+)LAT-1的突变会损害该复合物的转运功能,并导致选择性氨基酸尿症,赖氨酸尿酸蛋白不耐受(LPI,OMIM#222700),并伴有严重的复杂临床症状。活性转运蛋白的亚基共定位在质膜中,但是二聚化的确切过程尚不清楚,因为尚无直接证据证明该转运蛋白在完整人类细胞中的组装。在这项研究中,我们使用荧光共振能量转移(FRET)显微镜研究y(+)LAT-1和4F2hc在表达y(+)LAT-1和4F2hc与ECFP或EYFP融合的HEK293细胞中的相互作用。通过测量受体(EYFP)光漂白后供体荧光团(ECFP)中的荧光强度变化来量化FRET。从内质网和高尔基体复合物到质膜,整个细胞内都可以检测到供体荧光增加。因此,我们的数据证明了y(+)LAT-1和4F2hc在质膜之前的相互作用,从而为4F2hc充当了辅助y(+)LAT-1到质膜运输的伴侣提供了证据。

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