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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Residues in the eighth transmembrane domain of the proton-coupled folate transporter (SLC46A1) play an important role in defining the aqueous translocation pathway and in folate substrate binding
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Residues in the eighth transmembrane domain of the proton-coupled folate transporter (SLC46A1) play an important role in defining the aqueous translocation pathway and in folate substrate binding

机译:质子偶联叶酸叶酸转运蛋白(SLC46A1)的第八跨膜结构域中的残基在定义含水易位途径和叶酸底物结合方面发挥着重要作用

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摘要

The proton-coupled folate transporter (PCFT-SLC46A1) is required for intestinal folate absorption and folate transport across the choroid plexus. This report addresses the structure/function of the 8th transmembrane helix. Based upon biotinylation of cysteine-substituted residues by MTSEA-biotin, 14 contiguous exofacial residues to Leu316 were accessible to the extracellular compartment of the 23 residues in this helix (Leu303-Leu325). Pemetrexed blocked biotinylation of six Cys-substituted residues deep within the helix implicating an important role for this region in folate binding. Accessibility decreased at 4 degrees C vs RT. The influx K-t, K-i and V-max were markedly increased for the P314C mutant, similar to what was observed for Y315A and Y315P mutants. However, the K-t, alone, was increased for the P314Y mutant. To correlate these observations with PCFT structural changes during the transport cycle, homology models were built for PCFT based upon the recently reported structures of bovine and rodent GLUT5 fructose transporters in the inward-open and outward- open conformations, respectively. The models predict substantial structural alterations in the exofacial region of the eighth transmembrane helix as it cycles between its conformational states that can account for the extended and contiguous aqueous accessibility of this region of the helix. Further, a helix break in one of the two conformations can account for the critical roles Pro314 and Tyr315, located in this region, play in PCFT function. The data indicates that the 8th transmembrane helix of PCFT plays an important role in defining the aqueous channel and the folate binding pocket.
机译:质子耦合叶酸转运体(PCFT-SLC46A1)所需的肠吸收叶酸和整个脉络丛叶酸运输。本报告阐述了第八跨膜螺旋的结构/功能。基于由MTSEA生物素的半胱氨酸取代的残基的生物素化,连续的14个残基exofacial至Leu316分别到23个残基的在该螺旋(Leu303-Leu325)的细胞外区室访问。培美曲塞阻塞六个半胱氨酸取代的残基的生物素化的螺旋内深暗示此区域中叶酸结合中起重要作用。辅助功能在4摄氏度降低VS RT。涌入K-T,K-i和V-Max的显着增加为P314C突变体,类似于所观察到的对于Y315A和Y315P突变体。然而,K-T,独自一人,增加了P314Y突变。关联与运送周期中PCFT结构变化这些意见,同宗同源车型分别建分别沿向内开放,outward-开放式构象基于牛和啮齿动物GLUT5果糖转运最近报道结构,PCFT。该模型预测实质结构变化在第八跨膜螺旋,因为它循环其构象状态之间可占螺旋的该区域的扩展和连续的含水的可访问性exofacial区域。此外,在两种构象的一个螺旋突破可占关键作用Pro314和Tyr315,位于该区域,在PCFT功能发挥。该数据表明PCFT的第八跨膜螺旋在定义水性通道和叶酸结合口袋中起重要作用。

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