Neurotrophin-3 stimulates stem Leydig cell proliferation during regeneration in rats.

IF 5.3 2区 医学 Q1 Biochemistry, Genetics and Molecular Biology
Journal of Cellular and Molecular Medicine Pub Date : 2020-12-01 Epub Date: 2020-10-22 DOI:10.1111/jcmm.15886
Yige Yu, Zengqiang Li, Feifei Ma, Quanxu Chen, Liben Lin, Qiang Xu, Yang Li, Xiu Xin, Peipei Pan, Tongliang Huang, Yiyan Wang, Qianjin Fei, Ren-Shan Ge
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引用次数: 6

Abstract

Neurotrophin-3 (NT-3) acts as an important growth factor to stimulate and control tissue development. The NT-3 receptor, TRKC, is expressed in rat testis. Its function in regulation of stem Leydig cell development and its underlying mechanism remain unknown. Here, we reported the role of NT-3 to regulate stem Leydig cell development in vivo and in vitro. Ethane dimethane sulphonate was used to kill all Leydig cells in adult testis, and NT-3 (10 and 100 ng/testis) was injected intratesticularly from the 14th day after ethane dimethane sulphonate injection for 14 days. NT-3 significantly reduced serum testosterone levels at doses of 10 and 100 ng/testis without affecting serum luteinizing hormone and follicle-stimulating hormone levels. NT-3 increased CYP11A1-positive Leydig cell number at 100 ng/testis and lowered Leydig cell size and cytoplasmic size at doses of 10 and 100 ng/testis. After adjustment by the Leydig cell number, NT-3 significantly down-regulated the expression of Leydig cell genes (Lhcgr, Scarb1, Star, Cyp11a1, Hsd3b1, Cyp17a1, Hsd17b3, Hsd11b1, Insl3, Trkc and Nr5a1) and the proteins. NT-3 increased the phosphorylation of AKT1 and mTOR, decreased the phosphorylation of 4EBP, thereby increasing ATP5O. In vitro study showed that NT-3 dose-dependently stimulated EdU incorporation into stem Leydig cells and inhibited stem Leydig cell differentiation into Leydig cells, thus leading to lower medium testosterone levels and lower expression of Lhcgr, Scarb1, Trkc and Nr5a1 and their protein levels. NT-3 antagonist Celitinib can antagonize NT-3 action in vitro. In conclusion, the present study demonstrates that NT-3 stimulates stem Leydig cell proliferation but blocks the differentiation via TRKC receptor.

Abstract Image

Abstract Image

Abstract Image

神经营养因子-3刺激大鼠干细胞再生过程中的间质细胞增殖。
神经营养因子-3 (NT-3)是刺激和控制组织发育的重要生长因子。NT-3受体TRKC在大鼠睾丸中表达。其在茎间质细胞发育调控中的作用及其机制尚不清楚。在这里,我们报道了NT-3在体内和体外调节干细胞间质细胞发育的作用。用二甲烷磺酸乙烷杀灭成虫睾丸间质细胞,注射后第14天开始滴注NT-3(10和100 ng/睾丸),持续14 d。NT-3在10和100 ng/睾丸剂量下显著降低血清睾酮水平,而不影响血清黄体生成素和促卵泡激素水平。NT-3在100 ng/睾丸时增加了cyp11a1阳性间质细胞的数量,并降低了10和100 ng/睾丸时间质细胞的大小和细胞质大小。经Leydig细胞数量调节后,NT-3显著下调Leydig细胞基因(Lhcgr、Scarb1、Star、Cyp11a1、Hsd3b1、Cyp17a1、Hsd17b3、Hsd11b1、Insl3、Trkc、Nr5a1)及相关蛋白的表达。NT-3增加了AKT1和mTOR的磷酸化,降低了4EBP的磷酸化,从而增加了atp50。体外研究表明,NT-3剂量依赖性地刺激EdU掺入间质干细胞,抑制间质干细胞向间质细胞的分化,从而降低中睾酮水平,降低Lhcgr、Scarb1、Trkc和Nr5a1的表达及其蛋白水平。NT-3拮抗剂塞利替尼在体外可拮抗NT-3。综上所述,本研究表明NT-3刺激干细胞间质细胞增殖,但通过TRKC受体阻断其分化。
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来源期刊
CiteScore
10.00
自引率
1.90%
发文量
496
审稿时长
28 weeks
期刊介绍: Bridging physiology and cellular medicine, and molecular biology and molecular therapeutics, Journal of Cellular and Molecular Medicine publishes basic research that furthers our understanding of the cellular and molecular mechanisms of disease and translational studies that convert this knowledge into therapeutic approaches.
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