Endocytosis in spermatids during spermiogenesis of the mouse

D Segretain1

  • 1Laboratoire d'Histologie-Embryologie, CHU Paris Ouest, France.

Biology of the Cell
|January 1, 1989
PubMed

Insights

Spermatids actively engage in adsorptive endocytosis throughout spermiogenesis, utilizing this process to internalize materials essential for sperm development. This pathway involves vesicles, tubules, and multivesicular bodies, with the Golgi apparatus playing a key role in membrane recycling.

Area of Science:

  • Cell Biology
  • Reproductive Biology
  • Spermatogenesis

Background:

  • Spermatid cytoplasm contains various membrane structures like pits, vesicles, tubules, and multivesicular bodies (MVB).
  • The process of endocytosis in spermatids during spermiogenesis is not fully understood.

Purpose of the Study:

  • To investigate the pathway of non-specific adsorptive endocytosis in mouse spermatids.
  • To determine the role of endocytosis in the uptake of materials during sperm development.

Main Methods:

  • Microinjection of cationic ferritin (CF) tracer into seminiferous tubules and germ cell cultures.
  • Fixation of tissue and cultures at various time intervals post-injection.
  • Microscopical analysis to track CF localization within spermatids.

Main Results:

  • Cationic ferritin (CF) was observed in vesicles, tubules, multivesicular bodies (MVB), and lysosome-like bodies in spermatids 2-5 hours after microinjection.
  • Simultaneous labeling of Golgi apparatus components (medulla and cortex transsaccule) was noted.
  • In primary cultures, CF appeared in vesicles (5 min), tubules (10 min), pale MVB (30 min), dense MVB and lysosome-like bodies (1 hr), and Golgi medulla vesicles/tubules (2.5 hr).

Conclusions:

  • Spermatids exhibit high levels of adsorptive endocytosis activity throughout spermiogenesis.
  • Endocytosis is likely a crucial mechanism for spermatids to acquire materials for spermatozoa construction.
  • The Golgi region's strong labeling suggests a significant role in recycling endocytosed membranes.

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