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内肽酶-2介导的神经肽Y(NPY)代谢阻碍了大鼠肾脏中NPY受体的特性研究。

Neuropeptide Y (NPY) metabolism by endopeptidase-2 hinders characterization of NPY receptors in rat kidney.

作者信息

Price J S, Kenny A J, Huskisson N S, Brown M J

机构信息

Clinical Pharmacology Unit, University of Cambridge Clinical School, Addenbrooke's Hospital.

出版信息

Br J Pharmacol. 1991 Oct;104(2):321-6. doi: 10.1111/j.1476-5381.1991.tb12429.x.

Abstract
  1. Despite the observation of pharmacological responses to neuropeptide Y (NPY) in mammalian kidneys, there are species differences in the ease with which specific NPY binding sites can be demonstrated; we have investigated whether this can be explained by differential metabolism of NPY by a membrane-bound peptidase. 2. NPY receptors were identified on cell membranes isolated from the rabbit kidney (KD = 97 +/- 16 pM, Bmax = 290 +/- 30 fmol mg-1 protein), and this preparation did not degrade [125I]-NPY. However, a similar preparation of cell membranes from the rat kidney exhibited a much lower apparent receptor affinity (IC50 approximately 30 nM); these membranes rapidly degraded [125I]-NPY to fragments which did not bind NPY receptors in either tissue. 3. [125I]-NPY binding sites were revealed in the rat kidney when degradation was inhibited by insulin B chain. Chelating agents also inhibited degradation, but interfered with receptor binding. Binding sites could not be demonstrated in sections of rat kidney, even in the presence of insulin B chain. 4. The difference in degradative activity between rat and rabbit renal cell membranes, inhibition of degradation by chelating agents and insulin B chain, and insensitivity to phosphoramidon suggest that the enzyme responsible was endopeptidase-2, and this was confirmed by comparing the hydrolysis of [125I]-NPY by purified enzyme with rat renal tissue. Activity of this enzyme explains the difficulties encountered demonstrating receptors in the rat kidney. 5. Renal cell membranes from the mouse digested [125I]-NPY in a similar manner and this may be due to the closely related enzyme, meprin. NPY degradation has not previously been reported. The results suggest that NPY should be added to the list of peptides sensitive to these enzymes.
摘要
  1. 尽管在哺乳动物肾脏中观察到了对神经肽Y(NPY)的药理反应,但在特定NPY结合位点的显示难易程度上存在物种差异;我们研究了这是否可以通过膜结合肽酶对NPY的不同代谢来解释。2. 在从兔肾分离的细胞膜上鉴定出了NPY受体(KD = 97±16 pM,Bmax = 290±30 fmol mg-1蛋白),并且该制剂不会降解[125I]-NPY。然而,来自大鼠肾脏的类似细胞膜制剂表现出低得多的表观受体亲和力(IC50约为30 nM);这些膜迅速将[125I]-NPY降解为在两种组织中均不结合NPY受体的片段。3. 当胰岛素B链抑制降解时,在大鼠肾脏中发现了[125I]-NPY结合位点。螯合剂也抑制降解,但会干扰受体结合。即使在存在胰岛素B链的情况下,在大鼠肾脏切片中也无法显示结合位点。4. 大鼠和兔肾细胞膜之间降解活性的差异、螯合剂和胰岛素B链对降解的抑制以及对磷酰胺的不敏感性表明,负责的酶是内肽酶-2,通过比较纯化酶与大鼠肾组织对[125I]-NPY的水解来证实这一点。该酶的活性解释了在大鼠肾脏中显示受体时遇到的困难。5. 来自小鼠的肾细胞膜以类似方式消化[125I]-NPY,这可能归因于密切相关的酶——meprin。以前尚未报道过NPY降解。结果表明,NPY应添加到对这些酶敏感的肽列表中。

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Neuropeptide Y: complete amino acid sequence of the brain peptide.神经肽Y:脑肽的完整氨基酸序列。
Proc Natl Acad Sci U S A. 1982 Sep;79(18):5485-9. doi: 10.1073/pnas.79.18.5485.
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Neuropeptide Y receptor in the rat brain.大鼠脑中的神经肽Y受体
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