GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE-S PROTEIN DISTRIBUTION DURING MOUSE SPERMATOGENESIS

Citation
Do. Bunch et al., GLYCERALDEHYDE-3-PHOSPHATE DEHYDROGENASE-S PROTEIN DISTRIBUTION DURING MOUSE SPERMATOGENESIS, Biology of reproduction, 58(3), 1998, pp. 834-841
Citations number
71
Categorie Soggetti
Reproductive Biology
Journal title
ISSN journal
00063363
Volume
58
Issue
3
Year of publication
1998
Pages
834 - 841
Database
ISI
SICI code
0006-3363(1998)58:3<834:GDPDD>2.0.ZU;2-C
Abstract
The spermatogenic cell-specific isoform of glyceraldehyde 3-phosphate dehydrogenase (GAPD-S) may regulate glycolysis and energy production r equired for sperm motility. Although the steady-state level of Gapd-s mRNA is maximal at step 9 of mouse spermatogenesis, GAPD-S protein was not detected by immunohistochemistry until steps 12-13. This results suggests that Gapd-s is translationally regulated. Western blot analys is of isolated germ cells confirmed that GAPD-S is not detected in pac hytene spermatocytes or round spermatids. A major immunoreactive prote in migrating with a molecular weight (M-r) of 69 200 was observed in c ondensing spermatids and cauda sperm. Additional minor proteins that m igrated at M-r 55 200, 32 500, and 27 500 were detected in sperm. The molecular weight of GAPD-S is higher than the predicted molecular weig ht of 47 445, apparently due to a proline-rich 105-amino acid domain a t that N-terminus. Recombinant GAPD-S protein Backing the proline-rich region migrated at M-r 38 250, comparably to somatic GAPD, which also lacks the proline-rich domain. Indirect immunofluorescence demonstrat ed that GAPD-S is restricted to the principal piece in the sperm flage llum. Western blot analysis indicated that GAPD-S is rightly associate d with the fibrous sheath of the flagellum, consistent with a potentia l role in regulating sperm motility.