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Expression of mannose 6-phosphate receptor messenger ribonucleic acids in mouse spermatogenic and Sertoli cells

D A O'Brien1, J E Welch, K D Fulcher

  • 1Department of Pediatrics, University of North Carolina at Chapel Hill 27599-7500.

Biology of Reproduction
|February 1, 1994
PubMed

Insights

Mouse spermatogenic and Sertoli cells express distinct mannose 6-phosphate receptors (MPRs). Cation-dependent MPR (CD-MPR) transcripts show unique smaller forms in germ cells, suggesting alternative polyadenylation.

Area of Science:

  • Reproductive Biology
  • Molecular Cell Biology
  • Genetics

Background:

  • Mannose 6-phosphate receptors (MPRs) mediate lysosomal enzyme targeting.
  • Spermatogenic and Sertoli cells synthesize MPRs differently.
  • Understanding MPR mRNA expression is crucial for germ cell development.

Purpose of the Study:

  • To investigate the relative expression of cation-independent (CI) and cation-dependent (CD) MPR mRNAs in mouse spermatogenic and Sertoli cells.
  • To identify distinct MPR mRNA transcripts in germ cells compared to somatic cells.

Main Methods:

  • Isolation of spermatogenic and Sertoli cells from mouse testes.
  • Northern blot analysis of poly(A)+ RNAs using specific cDNA probes for CI-MPR and CD-MPR.
  • Ribonuclease H treatment to remove poly(A) tails.

Main Results:

  • A single, abundant ~10 kb CI-MPR transcript was found in Sertoli cells and spermatogenic cells.
  • CD-MPR mRNA expression varied, with smaller transcripts (~1.4 and 1.6 kb) prominent in pachytene spermatocytes and round spermatids.
  • These smaller CD-MPR transcripts, absent in somatic tissues, likely result from alternative polyadenylation.
  • Removal of poly(A) tails revealed identical ~1.3 kb CD-MPR mRNAs in spermatogenic cells, indicating poly(A) tail length variation.

Conclusions:

  • Spermatogenic cells utilize alternative polyadenylation for CD-MPR mRNA production.
  • Distinct CD-MPR mRNA isoforms are characteristic of mouse germ cells.
  • Differential MPR mRNA expression may play a role in specific cellular functions during spermatogenesis.

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