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视网膜毛细血管周细胞中内皮素受体的特征以及内皮素对二酰甘油和蛋白激酶C的影响

Characterization of endothelin receptors and effects of endothelin on diacylglycerol and protein kinase C in retinal capillary pericytes.

作者信息

Lee T S, Hu K Q, Chao T, King G L

机构信息

Research Division, Joslin Diabetes Center, Boston, MA 02215.

出版信息

Diabetes. 1989 Dec;38(12):1643-6. doi: 10.2337/diab.38.12.1643.

Abstract

Retinal capillary pericyte is a cell type selectively lost in early diabetic retinopathy. The physiological function of pericytes is not yet clearly identified, although it probably has contractile properties. We determined the specific binding of endothelin 1, a 21-amino acid peptide with potent vasoconstrictive action, and the stimulation of diacylglycerol/protein kinase C (DAG/PKC) pathway in cultured retinal capillary pericytes by endothelin. A single specific binding site for 125I-labeled endothelin was identified, with an apparent Kd of 1.3 nM and a maximal binding capacity of approximately 1-2 x 10(5) sites/cell. Endothelin (100 nM) increased total cellular DAG content by 15% at 5 min and 24% at 10 min. When pericytes were labeled isotopically with [3H]glycerol, endothelin stimulated [3H]DAG formation by 100% at 10 min and 88% at 30 min. After 10 min of endothelin treatment, PKC activities were increased by 60 and 100% in the membranous and cytosolic pools, respectively. We conclude that bovine retinal capillary pericytes possess numerous high-affinity specific binding sites for endothelin that mediate the action of endothelin by the stimulation of the DAG/PKC pathway in pericytes. These findings suggest that endothelin is a regulator of the contractile properties of pericytes, which may be adversely affected in diabetic retinopathy.

摘要

视网膜毛细血管周细胞是一种在早期糖尿病视网膜病变中选择性丢失的细胞类型。尽管周细胞可能具有收缩特性,但其生理功能尚未明确确定。我们测定了内皮素-1(一种具有强大血管收缩作用的21个氨基酸的肽)的特异性结合,以及内皮素对培养的视网膜毛细血管周细胞中二酰甘油/蛋白激酶C(DAG/PKC)途径的刺激作用。鉴定出了一个125I标记的内皮素的单一特异性结合位点,其表观解离常数(Kd)为1.3 nM,最大结合容量约为1 - 2×10(5)个位点/细胞。内皮素(100 nM)在5分钟时使细胞总DAG含量增加15%,在10分钟时增加24%。当用[3H]甘油对周细胞进行同位素标记时,内皮素在10分钟时刺激[3H]DAG形成增加100%,在30分钟时增加88%。内皮素处理10分钟后,膜相和胞质部分的PKC活性分别增加了60%和100%。我们得出结论,牛视网膜毛细血管周细胞具有大量内皮素的高亲和力特异性结合位点,这些位点通过刺激周细胞中的DAG/PKC途径介导内皮素的作用。这些发现表明内皮素是周细胞收缩特性的调节剂,而在糖尿病视网膜病变中周细胞的收缩特性可能受到不利影响。

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