Hu Guo-Xin, Lin Han, Chen Guo-Rong, Chen Bing-Bing, Lian Qing-Quan, Hardy Dianne O, Zirkin Barry R, Ge Ren-Shan
Center for Biomedical Research, Population Council, New York, NY 10065, USA.
J Androl. 2010 Jul-Aug;31(4):379-87. doi: 10.2164/jandrol.109.008680. Epub 2010 Mar 4.
Deletion of the insulin-like growth factor 1 (Igf1) gene was shown in previous studies to result in reduced numbers of Leydig cells in the testes of 35-day-old mice, and in reduced circulating testosterone levels. In the current study, we asked whether deletion of the Igf1 gene affects the number, proliferation, and/or steroidogenic function of some or all of the precursor cell types in the developmental sequence that leads to the establishment of adult Leydig cells (ALCs). Decreased numbers of cells in the Leydig cell lineage (ie, 3β-hydroxysteroid dehydrogenase-positive cells) were seen in testes of postnatal day (PND) 14-90 Igf1(-/-) mice compared with age-matched Igf1(+/+) controls. The development of ALCs proceeds from stem Leydig cells (SLCs) through progenitor Leydig cells (PLCs) and immature Leydig cells (ILCs). The bromodeoxyuridine labeling index of putative SLCs was similar in the Igf1(-/-) and Igf1(+/+) mice. In contrast, the labeling index of PLCs was reduced in the Igf1(-/-) mice on each day of PND 14 through PND 35, and that of more mature Leydig cells (referred to herein as LCs, a combination of ILCs plus ALCs) was reduced from PND 21 through PND 56. In Igf1(-/-) mice that received recombinant IGF-I, the labeling indices of PLCs and LCs were similar to those of age-matched Igf1(+/+) mice, indicating that the reductions in the labeling indices seen in the PLCs and LCs of the Igf1(-/-) mice were a consequence of reduced IGF-I. On each day of PND 21 through PND 90, testicular testosterone concentrations were significantly reduced in the Igf1(-/-) mice, as were the expressions of testis-specific mRNAs involved in steroidogenesis, including Star, Cyp11a1, and Cyp17a1. The increased expression of the gene for 5α-reductase (Srd5a1) in adult Igf1(-/-) testes suggests that the depletion of Igf1 might suppress or delay Leydig cell maturation. These observations, taken together, indicate that the reduced numbers of Leydig cells in the adult testes of Igf1(-/-) mice result at least in part from altered proliferation and differentiation of ALC precursor cells, but not of the stem cells that give rise to these cells.
先前的研究表明,胰岛素样生长因子1(Igf1)基因的缺失会导致35日龄小鼠睾丸中Leydig细胞数量减少,以及循环睾酮水平降低。在本研究中,我们探讨了Igf1基因的缺失是否会影响导致成年Leydig细胞(ALCs)形成的发育序列中部分或全部前体细胞类型的数量、增殖和/或类固醇生成功能。与年龄匹配的Igf1(+/+)对照相比,在出生后第14 - 90天(PND)的Igf1(-/-)小鼠睾丸中,Leydig细胞谱系中的细胞数量减少(即3β - 羟基类固醇脱氢酶阳性细胞)。ALCs的发育从干细胞Leydig细胞(SLCs)开始,经过祖细胞Leydig细胞(PLCs)和未成熟Leydig细胞(ILCs)。在Igf1(-/-)和Igf1(+/+)小鼠中,假定的SLCs的溴脱氧尿苷标记指数相似。相比之下,在出生后第14天至第35天的每一天,Igf1(-/-)小鼠中PLCs的标记指数均降低,而在出生后第2l天至第56天,更成熟的Leydig细胞(本文中称为LCs,即ILCs和ALCs的组合)的标记指数降低。在接受重组IGF - I的Igf1(-/-)小鼠中,PLCs和LCs的标记指数与年龄匹配的Igf1(+/+)小鼠相似,这表明在Igf1(-/-)小鼠的PLCs和LCs中观察到的标记指数降低是IGF - I减少的结果。在出生后第21天至第90天的每一天,Igf1(-/-)小鼠的睾丸睾酮浓度均显著降低,参与类固醇生成的睾丸特异性mRNA的表达也显著降低,包括Star、Cyp11a1和Cyp17a1。成年Igf1(-/-)睾丸中5α - 还原酶(Srd5a1)基因表达的增加表明,Igf1的缺失可能会抑制或延迟Leydig细胞的成熟。综上所述,这些观察结果表明,Igf(-/-)小鼠成年睾丸中Leydig细胞数量减少至少部分是由于ALC前体细胞的增殖和分化改变,而不是产生这些细胞的干细胞的增殖和分化改变。