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HL-1细胞的转运特性:一种用于研究心肌细胞腺苷生理学的新模型。

Transport characteristics of HL-1 cells: a new model for the study of adenosine physiology in cardiomyocytes.

作者信息

Chaudary Naz, Shuralyova Iirina, Liron Tamar, Sweeney Gary, Coe Imogen R

机构信息

Department of Biology, York University, Toronto, ON, Canada.

出版信息

Biochem Cell Biol. 2002;80(5):655-65. doi: 10.1139/o02-143.

Abstract

Adenosine is a physiologically important nucleoside in the cardiovascular system where it can act as a cardioprotectant and modulator of energy usage. Adenosine transporters (ATs) modulate cellular adenosine levels, which, in turn, can affect a number of processes such as receptor activation and glucose uptake, but their role in cardiac physiology is poorly understood. Therefore, we have developed a new cell model by determining various adenosine-related characteristics of HL-1, an immortalized atrial cardiomyocyte murine cell line. Adenosine uptake in HL-1 cells is sodium independent, saturable, and inhibitable by nucleoside transport inhibitors (nitrobenzylthioinosine (NBTI), dipyridamole, dilazep). Reverse transcription--polymerase chain reaction analysis confirmed that HL-1 cells possess mouse equilibrative nucleoside transporters 1 and 2 (mENT1, mENT2) and kinetic analyses indicate moderate-affinity (Km = 51.3 +/- 12.9 microM), NBTI-sensitive adenosine transport. NBTI binds at a high-affinity single site (B(max) = 520 +/- 10 fmol/mg protein, Kd = 0.11 +/- 0.04 nM, 1.6 x 10(5) NBTI-binding sites/cell). HL-1 cells possess adenosine receptor, metabolic enzyme, protein kinase C isoform, and insulin-stimulated glucose transport profiles that match normal mouse heart. Therefore, HL-1 is an excellent model to study ATs within cardiomyocytes and the first model for evaluating in detail the role of the ATs in modulating effects of adenosine.

摘要

腺苷是心血管系统中一种具有重要生理意义的核苷,它可作为心脏保护剂和能量利用的调节剂。腺苷转运体(ATs)调节细胞内腺苷水平,进而影响许多过程,如受体激活和葡萄糖摄取,但其在心脏生理学中的作用尚不清楚。因此,我们通过测定永生化心房心肌细胞小鼠细胞系HL-1的各种腺苷相关特性,建立了一种新的细胞模型。HL-1细胞对腺苷的摄取不依赖于钠,具有饱和性,且可被核苷转运抑制剂(硝基苄硫肌苷(NBTI)、双嘧达莫、地拉齐普)抑制。逆转录-聚合酶链反应分析证实HL-1细胞具有小鼠平衡核苷转运体1和2(mENT1、mENT2),动力学分析表明其对腺苷的转运具有中等亲和力(Km = 51.3 +/- 12.9 microM),且对NBTI敏感。NBTI以高亲和力结合于单个位点(B(max) = 520 +/- 10 fmol/mg蛋白,Kd = 0.11 +/- 0.04 nM,1.6 x 10(5)个NBTI结合位点/细胞)。HL-1细胞具有与正常小鼠心脏相匹配的腺苷受体、代谢酶、蛋白激酶C同工型和胰岛素刺激的葡萄糖转运特征。因此,HL-1是研究心肌细胞内ATs的极佳模型,也是首个详细评估ATs在调节腺苷作用中作用的模型。

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