TY - JOUR
T1 - Differential transcription of Pgk genes during spermatogenesis in the mouse
AU - McCarrey, John R.
AU - Berg, Werner M.
AU - Paragioudakis, Steve J.
AU - Zhang, Peter L.
AU - Dilworth, Donald D.
AU - Arnold, Brent L.
AU - Rossi, John J.
N1 - Funding Information:
J.R.M. is very grateful to Dr. Clarke Millette for instruction in the use of the Sta-Put gradient system to isolate enriched populations of spermatogenic cells, and to Dr. Michael McBurney for providing mouse Pgk cDNA clones. This work was supported by grants to J.R.M. from the NIH (HD 23126) and the NSF (DMB-8904741), and to J.J.R. from the NIH (AI 29329) and the Parson’s Foundation. J.R.M. is the recipient of a career development award from the NIH (HD 00829).
PY - 1992/11
Y1 - 1992/11
N2 - We have analyzed the occurrence of transcripts produced from the ubiquitously expressed, X-linked Pgk-1 gene and the testis-specific, autosomal Pgk-2 gene during spermatogenesis in the mouse. We found that tissue specificity, developmental specificity, and cell-type specificity of these mRNAs parallel that previously reported for the two protein isozymes of phosphoglycerate kinase (PGK) encoded by these two genes. This indicates that primary regulation of differential expression of the Pgk genes during spermatogenesis is exerted at the transcriptional level. We first detected Pgk-2 mRNA in preleptotene spermatocytes, indicating that transcription of Pgk-2 is initiated coincident with the onset of meiosis in male germ cells, and then continues to increase in later spermatocytes and postmeiotic round spermatids. This expression initiates prior to an initial decline in Pgk-1 transcript levels observed in pachytene spermatocytes, which apparently follows inactivation of the single X chromosome in spermatogenic cells. However, unlike cessation of Pgk-1 transcription from the inactivated X chromosome in female somatic cells, we show that inactivation of the Pgk-1 locus in spermatogenic cells is not followed by methylation of a key CpG dinucleotide in the promoter region. These results support the idea that specific expression of the Pgk-2 gene in meiotic and postmeiotic spermatogenic cells has evolved to compensate for reduced levels of Pgk-1 gene product caused by transient X-chromosome inactivation in these cells. They further suggest that reinitiation of transcription of the paternal Pgk-1 allele shortly after fertilization is facilitated by constitutive hypomethylation in the promoter region of this gene throughout spermatogenesis.
AB - We have analyzed the occurrence of transcripts produced from the ubiquitously expressed, X-linked Pgk-1 gene and the testis-specific, autosomal Pgk-2 gene during spermatogenesis in the mouse. We found that tissue specificity, developmental specificity, and cell-type specificity of these mRNAs parallel that previously reported for the two protein isozymes of phosphoglycerate kinase (PGK) encoded by these two genes. This indicates that primary regulation of differential expression of the Pgk genes during spermatogenesis is exerted at the transcriptional level. We first detected Pgk-2 mRNA in preleptotene spermatocytes, indicating that transcription of Pgk-2 is initiated coincident with the onset of meiosis in male germ cells, and then continues to increase in later spermatocytes and postmeiotic round spermatids. This expression initiates prior to an initial decline in Pgk-1 transcript levels observed in pachytene spermatocytes, which apparently follows inactivation of the single X chromosome in spermatogenic cells. However, unlike cessation of Pgk-1 transcription from the inactivated X chromosome in female somatic cells, we show that inactivation of the Pgk-1 locus in spermatogenic cells is not followed by methylation of a key CpG dinucleotide in the promoter region. These results support the idea that specific expression of the Pgk-2 gene in meiotic and postmeiotic spermatogenic cells has evolved to compensate for reduced levels of Pgk-1 gene product caused by transient X-chromosome inactivation in these cells. They further suggest that reinitiation of transcription of the paternal Pgk-1 allele shortly after fertilization is facilitated by constitutive hypomethylation in the promoter region of this gene throughout spermatogenesis.
UR - https://www.scopus.com/pages/publications/0026496755
UR - https://www.scopus.com/pages/publications/0026496755#tab=citedBy
U2 - 10.1016/0012-1606(92)90056-M
DO - 10.1016/0012-1606(92)90056-M
M3 - Article
C2 - 1426623
AN - SCOPUS:0026496755
SN - 0012-1606
VL - 154
SP - 160
EP - 168
JO - Developmental Biology
JF - Developmental Biology
IS - 1
ER -