EXPRESSION OF A GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE GENE SPECIFIC TO MOUSE SPERMATOGENIC CELLS

EXPRESSION OF A GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE GENE SPECIFIC TO MOUSE SPERMATOGENIC CELLS
复制标题

DOI:
10.1095/biolreprod46.5.869
复制
发表时间:
1992-05-01
影响因子:
3.6
通讯作者:
EDDY, EM
EDDY, EM
中科院分区:
生物学2区
文献类型:
--
作者:
WELCH, JE;SCHATTE, EC;EDDY, EM

文献摘要

被引文献

相似文献

从小鼠生精细胞表达文库中分离到一个推定为生精细胞特异性甘油醛3-磷酸脱氢酶(GAPD-S)蛋白的cDNA克隆。Gapd-s cDNA包含1451 bp的转录序列,包括一个ATG起始密码子和一个poly(a)加法信号。Gapd-s起始密码子的位置与其他Gapd序列不同,导致生殖细胞Gapd-s蛋白在氨基端预计含有105个额外的残基。虽然GAPD在体细胞组织中组成性表达,但Northern blot分析表明,GAPD -s探针与1.5 kb的转录本杂交后仅存在于睾丸中。Gapd-s mRNA在出生后20日龄小鼠的睾丸中首次被检测到,这表明基因表达在单倍体圆形精子出现后不久就开始了。分离的小鼠粗线精母细胞和精母细胞的RNA Northern分析证实,Gapd-s的表达仅限于减数分裂后的生殖细胞。GAPD先前被认为是调节分离的圆形精子糖酵解的关键酶。我们假设GAPD-S酶在调节精子发生和精子中不同能量产生途径之间的转换中起重要作用。
A cDNA clone encoding a putative glyceraldehyde 3-phosphate dehydrogenase (GAPD-S) protein specific to spermatogenic cells was isolated from a mouse spermatogenic cell expression library. The Gapd-s cDNA contained 1451 bp of transcribed sequence, including an ATG initiation codon and a poly(A) addition signal. The location of the Gapd-s initiation codon differed from that of other Gapd sequences, resulting in a germ cell GAPD-S protein predicted to contain 105 additional residues at the amino terminus. While GAPD is constitutively expressed in somatic tissues, Northern blot analysis demonstrated that a Gapd-s probe hybridized to a 1.5-kb transcript present only in the testis. The Gapd-s mRNA was first detected during postnatal development in the testes of 20-day-old mice, suggesting that gene expression begins shortly after the appearance of haploid round spermatids. Northern analysis of RNA from isolated mouse pachytene spermatocytes and spermatids confirmed that Gapd-s expression is confined to post-meiotic germ cells. GAPD has been previously proposed to be the key enzyme regulating glycolysis in isolated round spermatids. We hypothesize that the GAPD-S enzyme plays an important role in regulating the switch between different pathways for energy production during spermiogenesis and in the spermatozoon.