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脑内组织蛋白酶D对脑微管蛋白分解作用的发育变化

Developmental changes in the breakdown of brain tubulin by cerebral cathepsin D.

作者信息

Banay-Schwartz M, Bracco F, DeGuzman T, Lajtha A

出版信息

Neurochem Res. 1983 Jan;8(1):51-61. doi: 10.1007/BF00965653.

Abstract

The activity of cathepsin D on hemoglobin and on cytoplasmic tubulin was measured in brain preparations at different ages--in newborn, 10- and 21-day-old, and young adult rats. Enzyme activity increased after birth, reaching a maximum at around 21 days, and then declined. This increase was not parallel with decreased turnover of proteins during development, but was parallel with decreasing level and increasing microheterogeneity and rate of assembly of tubulin during development. The breakdown of tubulin was heterogeneous, with initial fast breakdown of a large portion, followed by breakdown at a lower rate. This heterogeneity in breakdown persisted throughout development. The breakdown of tubulin, unlike that of hemoglobin, was at all ages greater at pH 5.8 than at pH 3.2. The possible role of cathepsin D in tubulin metabolism and the developmental changes under physiological conditions need further exploration.

摘要

在新生、10日龄、21日龄以及成年幼鼠不同年龄段的脑制备物中,测定了组织蛋白酶D对血红蛋白和细胞质微管蛋白的活性。酶活性在出生后增加,在约21天时达到最大值,然后下降。这种增加与发育过程中蛋白质周转率的降低不平行,但与发育过程中微管蛋白水平的降低、微异质性的增加以及组装速率的增加平行。微管蛋白的分解是异质性的,一开始大部分快速分解,随后以较低速率分解。这种分解的异质性在整个发育过程中持续存在。与血红蛋白不同,微管蛋白在所有年龄段的pH 5.8条件下的分解均比pH 3.2条件下更大。组织蛋白酶D在微管蛋白代谢中的可能作用以及生理条件下的发育变化需要进一步探索。

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