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肝脏内体中产生的胰岛素降解产物的表征:体内和体外研究

Characterization of insulin degradation products generated in liver endosomes: in vivo and in vitro studies.

作者信息

Clot J P, Janicot M, Fouque F, Desbuquois B, Haumont P Y, Lederer F

机构信息

Unité 30 INSERM, Hôpital Necker Enfants Malades, Paris, France.

出版信息

Mol Cell Endocrinol. 1990 Sep 10;72(3):175-85. doi: 10.1016/0303-7207(90)90142-u.

Abstract

The degradation products generated from A14 and B26 125I-labelled insulins in liver endosomes in vivo and in vitro have been isolated by high-performance liquid chromatography and cleavages in the B chain have been identified by automated radiosequence analysis. In rats sacrificed various times after injection of each of the 125I-labelled insulins, two major degradation products slightly less hydrophobic than intact iodoinsulins were identified; these accounted, at 8 min. for about 45% (A14 125I-labelled insulin) and 15% (B26 125I-labelled insulin) of the total radioactivity recovered, respectively. The products generated from A14 125I-labelled insulin contained an intact A chain, whereas those generated from B26 125I-labelled insulin contained a B chain cleaved at the B16-B17 bond. With B26 125I-labelled insulin, two minor products, with cleavages at the B23-B24 and B24-B25 bonds, were also observed. In vivo chloroquine treatment did not alter the nature but caused a decrease in the amount of insulin degradation products associated with endosomes. When endosomal fractions isolated from iodoinsulin injected rats were incubated at 30 degrees C in isotonic KCl, a rapid degradation of iodoinsulin, maximal at pH 6, was observed. With A14 125I-labelled insulin, the two major degradation products identified in vivo were generated along with monoiodotyrosine, but with B26 125I-labelled insulin monoiodotyrosine was the main product formed. Addition of ATP, presumably by decreasing the endosomal pH, shifted the medium pH for maximal iodoinsulin degradation to about 7-8. These studies have allowed a direct identification of two previously suggested cleavage sites in the B chain. They have also shown that the degradation products generated in cell-free endosomes under conditions that promote endosomal acidification are similar to those identified in vivo.

摘要

通过高效液相色谱法分离了体内和体外肝脏内体中A14和B26 125I标记胰岛素产生的降解产物,并通过自动放射性序列分析鉴定了B链中的裂解情况。在注射每种125I标记胰岛素后不同时间处死的大鼠中,鉴定出了两种主要降解产物,其疏水性略低于完整的碘胰岛素;在8分钟时,这些产物分别占回收总放射性的约45%(A14 125I标记胰岛素)和15%(B26 125I标记胰岛素)。A14 125I标记胰岛素产生的产物含有完整的A链,而B26 125I标记胰岛素产生的产物含有在B16 - B17键处裂解的B链。对于B26 125I标记胰岛素,还观察到了在B23 - B24和B24 - B25键处裂解的两种次要产物。体内氯喹治疗并未改变胰岛素降解产物的性质,但导致与内体相关的胰岛素降解产物数量减少。当从注射碘胰岛素的大鼠中分离的内体部分在30℃下于等渗KCl中孵育时,观察到碘胰岛素迅速降解,在pH 6时达到最大值。对于A14 125I标记胰岛素,体内鉴定出的两种主要降解产物与单碘酪氨酸一起产生,但对于B26 125I标记胰岛素,单碘酪氨酸是形成的主要产物。添加ATP,可能是通过降低内体pH,将碘胰岛素最大降解的培养基pH值转移到约7 - 8。这些研究直接鉴定了B链中两个先前提出的裂解位点。它们还表明,在促进内体酸化的条件下,无细胞内体中产生的降解产物与体内鉴定出的降解产物相似。

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