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Transmembrane Peptide as Potent Inhibitor of Oligomerization and Function of Human Organic Anion Transporter 1S⃞

机译:跨膜肽作为低聚作用的强抑制剂和人类有机阴离子转运蛋白1S⃞的功能

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摘要

Human organic anion transporter 1 (hOAT1) plays a critical role in the body disposition of environmental toxins and clinically important drugs, including anti-HIV therapeutics, antitumor drugs, antibiotics, antihypertensives, and anti-inflammatories. We have demonstrated previously that hOAT1 forms homo-oligomers in cultured cells and in rat kidney. However, the functional consequence of such oligomerization has never been elucidated. In the current study, we used a novel approach by examining the effects of short hydrophobic peptides corresponding to transmembrane domains (TMDs) 1 to 12 of hOAT1 on the oligomerization and function of the transporter. We constructed expression vectors encoding short fusion peptides corresponding to TMDs 1 to 12 of hOAT1. These peptides were transfected into hOAT1-expressing COS-7 cells. Our results showed that among all 12 peptides examined, only the peptide corresponding to TMD 6 of hOAT1 significantly disrupted hOAT1 oligomerization demonstrated by cross-linking and coimmunoprecipitation experiments. The same peptide also caused a reduced expression of hOAT1 at the cell surface. As a result, hOAT1-mediated transport activity was compromised. Our data suggest that the peptide corresponding to TMD 6 of hOAT1 is a potent inhibitor of hOAT1 oligomerization and that oligomerization of hOAT1 is critical for the expression of the transporter at the cell surface and consequently for the proper function of the transporter.
机译:人类有机阴离子转运蛋白1(hOAT1)在体内环境毒素和临床重要药物(包括抗HIV疗法,抗肿瘤药,抗生素,抗高血压药和抗炎药)的处置中起着关键作用。以前我们已经证明hOAT1在培养的细胞和大鼠肾脏中形成同源寡聚体。但是,从未阐明这种低聚的功能结果。在当前的研究中,我们通过检查对应于hOAT1跨膜结构域(TMD)1至12的短疏水肽​​对转运蛋白的寡聚和功能的影响,采用了一种新颖的方法。我们构建了表达载体,该表达载体编码对应于hOAT1的TMD 1至12的短融合肽。这些肽被转染到表达hOAT1的COS-7细胞中。我们的结果表明,在所检查的所有12种肽中,只有与hOAT1的TMD 6相对应的肽才能显着破坏hOAT1的寡聚,这是通过交联和共免疫沉淀实验证明的。相同的肽还导致hOAT1在细胞表面的表达降低。结果,hOAT1介导的运输活动受到损害。我们的数据表明,与hOAT1的TMD 6相对应的肽是hOAT1寡聚的有效抑制剂,而hOAT1的寡聚对于转运蛋白在细胞表面的表达至关重要,因此对于转运蛋白的正常功能至关重要。

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