TY - JOUR
T1 - Regulation of seminiferous tubule-associated stem Leydig cells in adult rat testes
AU - Li, Xiaoheng
AU - Wang, Zhao
AU - Jiang, Zhenming
AU - Guo, Jingjing
AU - Zhang, Yuxi
AU - Li, Chenhao
AU - Chung, Jinyong
AU - Folmer, Janet
AU - Liu, June
AU - Lian, Qingquan
AU - Ge, Renshan
AU - Zirkin, Barry R.
AU - Chen, Haolin
N1 - Funding Information:
We thank Dr. William Wright for his valuable suggestions on the experimental design. This work was supported by NIH Grant R37 AG21092 (to B.R.Z.); National Natural Science Foundation of China Grants NSFC31271252 (to H.C.), NSFC81471411 (to H.C.), NSFC30871434 (to R.G.), and NSFC31171425 (to R.G.); and an opening grant from Zhejiang Provincial Top Discipline of Clinical Medicine (to H.C. and Q.L.).
PY - 2016/3/8
Y1 - 2016/3/8
N2 - Testicular Leydig cells are the primary source of testosterone in males. Adult Leydig cells have been shown to arise from stem cells present in the neonatal testis. Once established, adult Leydig cells turn over only slowly during adult life, but when these cells are eliminated experimentally from the adult testis, new Leydig cells rapidly reappear. As in the neonatal testis, stem cells in the adult testis are presumed to be the source of the new Leydig cells. As yet, the mechanisms involved in regulating the proliferation and differentiation of these stem cells remain unknown. We developed a unique in vitro system of cultured seminiferous tubules to assess the ability of factors from the seminiferous tubules to regulate the proliferation of the tubule-associated stem cells, and their subsequent entry into the Leydig cell lineage. The proliferation of the stem Leydig cells was stimulated by paracrine factors including Desert hedgehog (DHH), basic fibroblast growth factor (FGF2), platelet-derived growth factor (PDGF), and activin. Suppression of proliferation occurred with transforming growth factor β (TGF-β). The differentiation of the stem cells was regulated positively by DHH, lithium- induced signaling, and activin, and negatively by TGF-β, PDGFBB, and FGF2. DHH functioned as a commitment factor, inducing the transition of stem cells to the progenitor stage and thus into the Leydig cell lineage. Additionally, CD90 (Thy1) was found to be a unique stem cell surface marker that was used to obtain purified stem cells by flow cytometry.
AB - Testicular Leydig cells are the primary source of testosterone in males. Adult Leydig cells have been shown to arise from stem cells present in the neonatal testis. Once established, adult Leydig cells turn over only slowly during adult life, but when these cells are eliminated experimentally from the adult testis, new Leydig cells rapidly reappear. As in the neonatal testis, stem cells in the adult testis are presumed to be the source of the new Leydig cells. As yet, the mechanisms involved in regulating the proliferation and differentiation of these stem cells remain unknown. We developed a unique in vitro system of cultured seminiferous tubules to assess the ability of factors from the seminiferous tubules to regulate the proliferation of the tubule-associated stem cells, and their subsequent entry into the Leydig cell lineage. The proliferation of the stem Leydig cells was stimulated by paracrine factors including Desert hedgehog (DHH), basic fibroblast growth factor (FGF2), platelet-derived growth factor (PDGF), and activin. Suppression of proliferation occurred with transforming growth factor β (TGF-β). The differentiation of the stem cells was regulated positively by DHH, lithium- induced signaling, and activin, and negatively by TGF-β, PDGFBB, and FGF2. DHH functioned as a commitment factor, inducing the transition of stem cells to the progenitor stage and thus into the Leydig cell lineage. Additionally, CD90 (Thy1) was found to be a unique stem cell surface marker that was used to obtain purified stem cells by flow cytometry.
KW - CD90
KW - DHH
KW - Leydig cell
KW - Stem cell
KW - Testosterone
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U2 - 10.1073/pnas.1519395113
DO - 10.1073/pnas.1519395113
M3 - Article
C2 - 26929346
AN - SCOPUS:84960856230
SN - 0027-8424
VL - 113
SP - 2666
EP - 2671
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 10
ER -