Lockwood D H, East L E
Diabetes. 1978 May;27(5):589-91. doi: 10.2337/diab.27.5.589.
We have previously shown that adipocytes from adult (between four and five months old) rats have reduced glucagon binding and glucagon-stimulated lipolytic activity when compared with cells from young (1.5 months old) animals. In the present study we measured specific [125I] glucagon binding by purified liver plasma membranes isolated from young and adult rats. When expressed on the basis of membrane protein content, 5'-nucleotidse activity, or specific [125I] insulin binding, the extend of [125I] glucagon binding by liver membranes was not influenced by aging. Furthermore, the degree of [125I] glucagon degradation was the same in both membrane preparations. These data describe a unique condition in which glucagon binding and hormone sensitivity diminish in one tissue but remain unaltered in another.
我们之前已经表明,与幼年(1.5个月大)动物的细胞相比,成年(4至5个月大)大鼠的脂肪细胞具有降低的胰高血糖素结合能力和胰高血糖素刺激的脂解活性。在本研究中,我们测量了从幼年和成年大鼠分离的纯化肝细胞膜上特异性[125I]胰高血糖素结合情况。当以膜蛋白含量、5'-核苷酸酶活性或特异性[125I]胰岛素结合为基础进行表达时,肝细胞膜上[125I]胰高血糖素结合的程度不受衰老影响。此外,两种膜制剂中[125I]胰高血糖素的降解程度相同。这些数据描述了一种独特的情况,即胰高血糖素结合和激素敏感性在一个组织中降低,但在另一个组织中保持不变。