Department of Cell Biology, University of Virginia Health System, Charlottesville, Virginia 22908, USA.
Biol Reprod. 2010 Nov;83(5):807-17. doi: 10.1095/biolreprod.110.085613. Epub 2010 Jul 21.
A fully developed, functional epididymis is important for male fertility. In particular, it is apparent that without the most proximal region, the initial segment (IS), infertility results. Therefore, it is important to understand the development and regulation of this crucial epididymal region. We have previously shown that many functions of the IS are regulated by luminal fluid factors/lumicrine factors from the testis. This study provides evidence that lumicrine factors activated the ERK pathway only in epithelial cells of the IS from Postnatal Day (P) 14 to P19 and sustained this activation into adulthood. The activated ERK pathway promoted cell proliferation and differentiation in the developing IS, although in the adult, its role was switched to maintain cell survival. To understand further the regulation of cell proliferation in the IS, we examined the role of DUSP6, an MAPK1/3 (ERK1/2) preferred phosphatase that is also regulated by lumicrine factors in the IS. Utilizing Dusp6(-/-) mice, our studies, surprisingly, revealed that Dusp6 was a major regulator of cell proliferation in the caput and corpus regions, whereas components of the ERK pathway, together with PTEN and SRC, were the major regulators of cell proliferation in the IS. We hypothesize that region-specific regulation of cell proliferation is caused by differences in the balance of activities between pro- and antiproliferation signaling pathway components for each epididymal region. An understanding of the mechanisms of cell proliferation may provide clues as to why the epididymis rarely succumbs to cancer.
一个发育完全、功能健全的附睾对于男性生育力至关重要。特别是,如果没有最靠近睾丸的附睾头起始段(IS),就会导致不育。因此,了解这个关键的附睾区域的发育和调控机制非常重要。我们之前的研究表明,IS 的许多功能受到来自睾丸的管腔液因子/管腔分泌因子的调控。本研究提供的证据表明,管腔分泌因子仅在 P14 至 P19 天的生后发育阶段激活 IS 上皮细胞中的 ERK 通路,并将这种激活持续到成年期。激活的 ERK 通路促进了生后发育 IS 中的细胞增殖和分化,尽管在成年期,其作用转变为维持细胞存活。为了进一步了解 IS 中细胞增殖的调控机制,我们研究了 DUSP6 的作用,它是一种 MAPK1/3(ERK1/2)的首选磷酸酶,也受到 IS 中管腔分泌因子的调控。利用 Dusp6(-/-) 小鼠,我们的研究出人意料地揭示,Dusp6 是头部和体部区域细胞增殖的主要调控因子,而 ERK 通路的组成部分,以及 PTEN 和 SRC,则是 IS 中细胞增殖的主要调控因子。我们假设,细胞增殖的区域特异性调控是由于每个附睾区域的促增殖和抗增殖信号通路成分之间的活性平衡存在差异所致。对细胞增殖机制的理解可能为为什么附睾很少发生癌症提供线索。