TEX11 Modulates Germ Cell Proliferation By Competing With Estrogen Receptor Beta For The Binding To HPIP

博士 === 國防醫學院 === 生命科學研究所 === 100 === Klinefelter syndrome (KS), characterized by the presence of one extra X chromosome in men, is a major genetic cause of male infertility. Germ cell degeneration in KS patients is thought to be the consequences of over-expression of some genes on the X chromosome....

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Main Authors: Yu, Yueh-hsiang, 游約翔
Other Authors: Yen, Pauline H.
Format: Others
Language:en_US
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/91922350434853548470
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spelling ndltd-TW-100NDMC01050252016-04-04T04:17:10Z http://ndltd.ncl.edu.tw/handle/91922350434853548470 TEX11 Modulates Germ Cell Proliferation By Competing With Estrogen Receptor Beta For The Binding To HPIP TEX11與beta型雌激素受質相互競爭與HPIP的結合來調控生殖細胞之增生 Yu, Yueh-hsiang 游約翔 博士 國防醫學院 生命科學研究所 100 Klinefelter syndrome (KS), characterized by the presence of one extra X chromosome in men, is a major genetic cause of male infertility. Germ cell degeneration in KS patients is thought to be the consequences of over-expression of some genes on the X chromosome. However, the identity of these genes and the underlying mechanisms remain unclear. TEX11 (Testis-expressed 11) is an X-chromosome encoded germ-cell specific protein that is expressed most abundantly in spermatogonia and early spermatocytes in the testes. We used yeast two-hybrid screen to search for TEX11 interacting partners and identified HPIP (Hematopoietic BPX-Interacting Protein) which anchors estrogen receptors (ERs) to the cytoskeleton and modulates their functions. We found that mouse spermatogonial stem cells expressed Tex11, Hpip, and Esr2, but not Esr1. In cultured cells TEX11 competed with ERb for the binding to HPIP. Upon treatment with 17b-estradiol (E2) or an ERb agonist DPN, TEX11 promoted the nuclear translocation of ERb and enhanced its transcriptional activities. On the other hand, TEX11 suppressed the nongenomic activities of ERb in the cytoplasm, as indicated by the reduced phosphorylation of AKT and ERK signaling molecules. Over-expression of TEX11 in mouse germ-cell derived GC-1 and GC-2 cells suppressed the cell proliferation and the expression of cFos, Ccnd1, and Ccnb1 that were stimulated by E2 or DPN, and elevated the expression level of the proapoptotic Bax gene. The negative effect of TEX11 on cell proliferation suggests that increased expression of TEX11 in the germ cells may partially contribute to the spermatogenic defect observed in KS patients. Yen, Pauline H. 蕭百忍 2012 學位論文 ; thesis 64 en_US
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language en_US
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sources NDLTD
description 博士 === 國防醫學院 === 生命科學研究所 === 100 === Klinefelter syndrome (KS), characterized by the presence of one extra X chromosome in men, is a major genetic cause of male infertility. Germ cell degeneration in KS patients is thought to be the consequences of over-expression of some genes on the X chromosome. However, the identity of these genes and the underlying mechanisms remain unclear. TEX11 (Testis-expressed 11) is an X-chromosome encoded germ-cell specific protein that is expressed most abundantly in spermatogonia and early spermatocytes in the testes. We used yeast two-hybrid screen to search for TEX11 interacting partners and identified HPIP (Hematopoietic BPX-Interacting Protein) which anchors estrogen receptors (ERs) to the cytoskeleton and modulates their functions. We found that mouse spermatogonial stem cells expressed Tex11, Hpip, and Esr2, but not Esr1. In cultured cells TEX11 competed with ERb for the binding to HPIP. Upon treatment with 17b-estradiol (E2) or an ERb agonist DPN, TEX11 promoted the nuclear translocation of ERb and enhanced its transcriptional activities. On the other hand, TEX11 suppressed the nongenomic activities of ERb in the cytoplasm, as indicated by the reduced phosphorylation of AKT and ERK signaling molecules. Over-expression of TEX11 in mouse germ-cell derived GC-1 and GC-2 cells suppressed the cell proliferation and the expression of cFos, Ccnd1, and Ccnb1 that were stimulated by E2 or DPN, and elevated the expression level of the proapoptotic Bax gene. The negative effect of TEX11 on cell proliferation suggests that increased expression of TEX11 in the germ cells may partially contribute to the spermatogenic defect observed in KS patients.
author2 Yen, Pauline H.
author_facet Yen, Pauline H.
Yu, Yueh-hsiang
游約翔
author Yu, Yueh-hsiang
游約翔
spellingShingle Yu, Yueh-hsiang
游約翔
TEX11 Modulates Germ Cell Proliferation By Competing With Estrogen Receptor Beta For The Binding To HPIP
author_sort Yu, Yueh-hsiang
title TEX11 Modulates Germ Cell Proliferation By Competing With Estrogen Receptor Beta For The Binding To HPIP
title_short TEX11 Modulates Germ Cell Proliferation By Competing With Estrogen Receptor Beta For The Binding To HPIP
title_full TEX11 Modulates Germ Cell Proliferation By Competing With Estrogen Receptor Beta For The Binding To HPIP
title_fullStr TEX11 Modulates Germ Cell Proliferation By Competing With Estrogen Receptor Beta For The Binding To HPIP
title_full_unstemmed TEX11 Modulates Germ Cell Proliferation By Competing With Estrogen Receptor Beta For The Binding To HPIP
title_sort tex11 modulates germ cell proliferation by competing with estrogen receptor beta for the binding to hpip
publishDate 2012
url http://ndltd.ncl.edu.tw/handle/91922350434853548470
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