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一种新型的β-Ala-Lys(AMCA)作为外皮质和外髓质肾刷状缘囊泡中 PEPT1 和 PEPT2 的转运报告子的用途。

A new use of β-Ala-Lys (AMCA) as a transport reporter for PEPT1 and PEPT2 in renal brush border membrane vesicles from the outer cortex and outer medulla.

机构信息

School of Science and Technology, University of New England Armidale, NSW 2351, Australia; Faculty of Science, Department of Biochemistry, Centre for Science and Medical Research, University of Jeddah, Saudi Arabia.

School of Biomedical and healthcare Sciences, Peninsula School of Medicine and Dentistry, Plymouth University, Plymouth PL4 8AA, UK.

出版信息

Biochim Biophys Acta Biomembr. 2018 May;1860(5):960-964. doi: 10.1016/j.bbamem.2017.12.021. Epub 2017 Dec 30.

Abstract

Integral membrane proteins PEPT1 and PEPT2 are essential for reabsorbing almost all hydrolysed or filtered di- and tripeptides alongside a wide range of peptidomimetic drugs in the kidney. The aim of this study was to investigate the potential use of the fluorophore-conjugated dipeptide β-Ala-Lys (AMCA) as a biosensor for measuring peptide transport activity in brush border membrane vesicles isolated from the outer cortex (BBMV-OC) and outer medulla (BBMV-OM) (representing PEPT1 and PEPT2 respectively). The vesicles were isolated using a dual magnesium precipitation and centrifugation technique. Intravesicular fluorescence accumulation was measured after incubating extra-vesicular media at pH6.6 and different concentrations of β-Ala-Lys (AMCA) with vesicles pre-equilibrated at pH7.4. Both BBMV-OC and BMMV-OM showed accumulation of an intravesicular fluorescence signal after 20min incubation. Changing the extra-vesicular pH to 7.4 caused a significant reduction in the β-Ala-Lys (AMCA) uptake into BBMV-OC at concentrations >100μM. When different concentrations of dipeptide, Gly-Gln was added, there was a significant inhibition of 100μM β-Ala-Lys (AMCA) uptake into BBMV-OC and BMMV-OM, reaching 69% and 80%, respectively. Kinetic analysis of β-Ala-Lys (AMCA) at 20min showed that the K and V were 783.7±115.7μM and 2191.2±133.9ΔF/min/mg for BBMV-OC, while BMMV-OM showed significantly higher affinity, but lower capacity at K=93.6±21.9μM and V=935.8±50.2ΔF/min/mg. These findings demonstrate the applicability of β-Ala-Lys (AMCA) as a biosensor to measure the transport activity of the renal-type PEPT1 and PEPT2 in BBMV-OC and BMMV-OM respectively.

摘要

整合膜蛋白 PEPT1 和 PEPT2 对于重吸收几乎所有水解或过滤的二肽和三肽以及肾脏中的广泛肽类似物药物至关重要。本研究旨在探讨荧光标记二肽β-Ala-Lys(AMCA)作为生物传感器测量从外皮质(BBMV-OC)和外髓质(BBMV-OM)分离的刷状缘膜囊泡中肽转运活性的潜力(分别代表 PEPT1 和 PEPT2)。使用双重镁沉淀和离心技术分离囊泡。在将外囊泡介质在 pH6.6 和不同浓度的β-Ala-Lys(AMCA)孵育后,测量囊泡在 pH7.4 下预平衡后的囊内荧光积累。BBMV-OC 和 BMMV-OM 在孵育 20min 后均显示出囊内荧光信号的积累。将外囊泡 pH 改变为 7.4 会导致在 >100μM 浓度下,BBMV-OC 中β-Ala-Lys(AMCA)的摄取量显著减少。当添加不同浓度的二肽Gly-Gln 时,BBMV-OC 和 BMMV-OM 中 100μMβ-Ala-Lys(AMCA)的摄取均受到显著抑制,分别达到 69%和 80%。在 20min 时对β-Ala-Lys(AMCA)进行的动力学分析表明,BBMV-OC 的 K 和 V 分别为 783.7±115.7μM 和 2191.2±133.9ΔF/min/mg,而 BMMV-OM 则表现出明显更高的亲和力,但 K=93.6±21.9μM 和 V=935.8±50.2ΔF/min/mg 的容量较低。这些发现证明了β-Ala-Lys(AMCA)作为生物传感器用于分别测量 BBMV-OC 和 BMMV-OM 中肾型 PEPT1 和 PEPT2 转运活性的适用性。

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