Abstract

The biochemical basis that regulates the timely and selective opening of the blood-testis barrier (BTB) to migrating preleptotene/leptotene spermatocytes at stage VIII of the epithelial cycle in adult rat testes is virtually unknown. Recent studies have shown that cytokines (e.g. transforming growth factor (TGF)-beta3) may play a crucial role in this event. However, much of this information relies on the use of toxicants (e.g. CdCl(2)), making it difficult to relay these findings to normal testicular physiology. Here we report that overexpression of TGF-beta3 in primary Sertoli cells cultured in vitro indeed perturbed the tight junction (TJ) barrier with a concomitant decline in the production of BTB constituent proteins as follows: occludin, N-cadherin, and ZO-1. Additionally, local administration of TGF-beta3 to testes in vivo was shown to reversibly perturb the BTB integrity and Sertoli-germ cell adhesion via the p38 MAPK and ERK signaling pathways. Most importantly, the simultaneous activation of p38 and ERK signaling pathways is dependent on the association of the TGF-beta3-TbetaR1 complex with adaptors TAB1 and CD2AP because if TbetaR1 was associated preferentially with CD2AP, only Sertoli-germ cell adhesion was perturbed without compromising the BTB. Collectively, these data illustrate that local production of TGF-beta3, and perhaps other TGF-betas and cytokines, by Sertoli and germ cells into the microenvironment at the BTB during spermatogenesis transiently perturbs the BTB and Sertoli-germ cell adhesion to facilitate germ cell migration when the activated TbetaRI interacts with adaptors TAB1 and CD2AP. However, TGF-beta3 selectively disrupts Sertoli-germ cell adhesion in the seminiferous epithelium to facilitate germ cell migration without compromising BTB when TbetaRI interacts only with adaptor CD2AP.

Highlights

  • Results reported in this paper have shown that in vivo administration of TGF-␤3 to adult rat testes is a novel model for studying BTB dynamics

  • It is of interest to note that other members of the TGF-␤ family, and perhaps other cytokines, may work in concert with TGF-␤3 to regulate BTB dynamics during spermatogenesis

  • Acknowledgments—We are grateful for the excellent technical assistance of Elena Sphicas at the Rockefeller University Bio-Imaging Resource Center in studies using electron microscope

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Summary

Transfection efficiency

Calcium phosphate co-precipitation (n ϭ 2) Calcium phosphate co-precipitation (n ϭ 4) Calcium phosphate co-precipitation (n ϭ 3) Effectene (n ϭ 2) Effectene (n ϭ 6). ND 15.5 Ϯ 2.8 a All vectors were purchased from Promega except pTracer-CMV2, which was obtained from Invitrogen.

EXPERIMENTAL PROCEDURES
Mouse Rabbit
RESULTS
An in Vivo Model for Studying BTB and AJ Dynamics
DISCUSSION
Full Text
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