O'Connor C M, Germain B J, Guthrie K M, Aswad D W, Millette C F
Endocrine and Reproductive Biology Group, Worcester Foundation for Experimental Biology, Shrewsbury, MA 01545.
Gamete Res. 1989 Mar;22(3):307-19. doi: 10.1002/mrd.1120220308.
An antiserum prepared against the purified protein carboxyl methyltransferase (PCMT) from bovine brain has been used to compare testicular and ovarian levels of the enzyme and to study the regulation of PCMT concentrations during spermatogenesis. The PCMT, which specifically modifies age-damaged aspartyl residues, is present at a significantly higher concentration in mature mouse testis than in ovary. However, the PCMT is present at nearly equal concentrations in extracts of germ cell-deficient ovaries and testes obtained from mutant atrichosis/atrichosis mice. In normal testis, the concentration of the PCMT increases severalfold during the first 4-5 weeks after birth, paralleling the appearance and maturation of testicular germ cells. Both immunochemical and enzymatic measurements of PCMT specific activities in purified spermatogenic cell preparations indicate that PCMT levels are twofold and 3.5-fold higher in round spermatids and residual bodies, respectively, than in pachytene spermatocytes. The results are consistent with the enhanced synthesis and/or stability of the PCMT in spermatogenic cells and with the continued translation of the PCMT during the haploid portion of spermatogenesis. The relatively high levels of PCMT in spermatogenic cells may be important for the extensive metabolism of proteins accompanying spermatid condensation or for the repair of damaged proteins in translationally inactive spermatozoa.
一种针对从牛脑中纯化的蛋白质羧甲基转移酶(PCMT)制备的抗血清,已被用于比较该酶在睾丸和卵巢中的水平,并研究精子发生过程中PCMT浓度的调节。PCMT专门修饰因老化而受损的天冬氨酰残基,在成熟小鼠睾丸中的浓度显著高于卵巢。然而,在从突变型无毛症/无毛症小鼠获得的缺乏生殖细胞的卵巢和睾丸提取物中,PCMT的浓度几乎相等。在正常睾丸中,出生后的前4 - 5周内,PCMT的浓度增加了几倍,这与睾丸生殖细胞的出现和成熟过程同步。对纯化的生精细胞制剂中PCMT比活性的免疫化学和酶学测量均表明,圆形精子细胞和残余体中的PCMT水平分别比粗线期精母细胞高2倍和3.5倍。这些结果与PCMT在生精细胞中合成增强和/或稳定性增加以及在精子发生单倍体阶段PCMT持续翻译一致。生精细胞中相对较高水平的PCMT可能对伴随精子细胞凝聚的蛋白质广泛代谢或对翻译不活跃的精子中受损蛋白质的修复很重要。