Regulation of spermatogonia
- PMID: 20614596
- Bookshelf ID: NBK27035
- DOI: 10.3824/stembook.1.7.1
Regulation of spermatogonia
Excerpt
The progression of spermatogenesis relies on the precise regulation of spermatogonial self-renewal and differentiation. Many genes/proteins have been identified with specific expression profiles in individual spermatogonial cell types but the molecular mechanism of their regulation is still obscure. In this review, an overview of current knowledge on the various factors essential for these two major steps of spermatogonial development is presented. Elucidating the function of these factors was typically made possible through either naturally occurring mutant mice or genetically modified mice, in which a specific and clearly defined spermatogonial arrest is seen. In addition, a few factors, which are potentially important but less clearly defined, are also included. Moreover, the relevance and postulated interactions between these factors is discussed.
Copyright: © 2008 Qing Zhou and Michael D. Griswold.
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References
-
- Aponte P. M, van Bragt M. P, de Rooij D. G, van Pelt A. M. Spermatogonial stem cells: characteristics and experimental possibilities. Apmis. 2005;113:727–742. - PubMed
-
- Atchison F. W, Capel B, Means A. R. Pin1 regulates the timing of mammalian primordial germ cell proliferation. Development. 2003;130:3579–3586. - PubMed
-
- Atchison F. W, Means A. R. Spermatogonial depletion in adult Pin1-deficient mice. Biology of Reproduction. 2003;69:1989–1997. - PubMed
-
- Atchison F. W, Means A. R. A role for Pin1 in mammalian germ cell development and spermatogenesis. Frontiers in Bioscience. 2004;9:3248–3256. - PubMed
-
- Ballow D, Meistrich M. L, Matzuk M, Rajkovic A. Sohlh1 is essential for spermatogonial differentiation. Developmental Biology. 2006a;294:161–167. - PubMed
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