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青春期前大鼠支持细胞和生精细胞中的脱氢二磷酸多萜醇合酶

Dehydrodolichyl diphosphate synthase in Sertoli and spermatogenic cells of prepuberal rats.

作者信息

Chen Z, Romrell L J, Allen C M

机构信息

Department of Biochemistry and Molecular Biology, J. Hillis Miller Health Center, University of Florida, Gainesville 32610.

出版信息

J Biol Chem. 1989 Mar 5;264(7):3849-53.

PMID:2645280
Abstract

The specific activity of 2,3-dehydrodolichyl diphosphate synthase in homogenates of protease-treated seminiferous tubules, enriched spermatogenic cells, and Sertoli cells changed as a function of the age of prepuberal rats. The highest enzymatic activity occurred in each case in 23-day-old rats. Homogenates of pachytene spermatocytes, spermatids, or Sertoli cells had higher synthase activity than a whole testicular homogenate prepared by protease treatment of tubules. Enzymatic activity in pachytene spermatocytes expressed per mg of protein was about 1.7-fold higher than in spermatids, 5.3-fold higher than in spermatogonia, and about 8.3-fold higher than in spermatozoa. Therefore, the increase in spermatogenic cell synthase before day 23 can be accounted for by the appearance of the pachytene spermatocytes. Enzymatic activity decreased remarkably after the differentiation of spermatids into spermatozoa. Synthase activity in enriched Sertoli cell preparations was 1.5-2.3-fold higher than in spermatogenic cell preparations between days 15 and 30. Therefore, both spermatogenic cells and Sertoli cells contribute to changes in the enzymatic activity in seminiferous tubules during development. These changes may be important in regulating the availability of dolichyl phosphate for glycoprotein synthesis during early stages of differentiation.

摘要

经蛋白酶处理的生精小管、富集的生精细胞和支持细胞匀浆中2,3-脱氢二磷酸多萜醇合酶的比活性随青春期前大鼠年龄的变化而改变。在每种情况下,23日龄大鼠的酶活性最高。粗线期精母细胞、精子细胞或支持细胞的匀浆比经蛋白酶处理的生精小管制备的全睾丸匀浆具有更高的合酶活性。以每毫克蛋白质计算,粗线期精母细胞中的酶活性比精子细胞高约1.7倍,比精原细胞高5.3倍,比精子高约8.3倍。因此,23天前生精细胞合酶的增加可归因于粗线期精母细胞的出现。精子细胞分化为精子后,酶活性显著下降。在15至30天之间,富集的支持细胞制剂中的合酶活性比生精细胞制剂中的高1.5至2.3倍。因此,生精细胞和支持细胞都对生精小管发育过程中酶活性的变化有贡献。这些变化可能对调节分化早期糖蛋白合成中磷酸多萜醇的可用性很重要。

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