Ion (Organic Acid and Base) Transporters and Homeostasis: A Review with Reference to its Usefulness as Biomarkers

P. Mandal
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引用次数: 1

Abstract

Organisms are continuously exposed to a great variety of xenobiotics via food and environment. Evolution has equipped the body with a plethora of protecting systems to defend itself against the potentially harmful effects of these compounds. One of the important defense mechanisms include the active extrusion of xenobiotics by commonly shared transport proteins, mainly located in kidney, liver and intestine. An attempt has been made to understand the structural and functional properties of organic anion transporters (OAT1, OAT2, OAT3) and organic cation transporters (OCTN1, OCTN2, OCT1, OCT2, OCT3). These transporters share a predicted 12-transmembrane domain (TMD) structure with a large extracellular loop between TMD1 and TMD2, carrying potential N-glycosylation sites. Conserved amino acid motifs revealed a relationship to the sugar transporter family within the major facilitator superfamily. Following heterologous expression, most OATs transported the model anion p-aminohippurate (PAH). OAT1, but not OA...
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离子(有机酸和碱)转运体与体内平衡:综述及其作为生物标志物的用途
生物体通过食物和环境不断接触到各种各样的外源物质。进化已经为身体配备了大量的保护系统来保护自己免受这些化合物的潜在有害影响。其中一个重要的防御机制是由共同转运蛋白(主要位于肾、肝和肠)主动挤出外源物质。对有机阴离子转运体(OAT1、OAT2、OAT3)和有机阳离子转运体(OCTN1、OCTN2、OCT1、OCT2、OCT3)的结构和功能特性进行了研究。这些转运蛋白共享一个预测的12跨膜结构域(TMD)结构,在TMD1和TMD2之间有一个大的细胞外环,携带潜在的n -糖基化位点。保守的氨基酸基序揭示了与主要促进剂超家族中的糖转运蛋白家族的关系。异种表达后,大多数燕麦转运模型阴离子对氨基马粪酸(PAH)。OAT1,但不是OA…
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