Katleba Kimberley, Legacki Erin, Berger Trish
Department of Animal Science, University of California, Davis, CA 95616, USA.
Animals (Basel). 2022 Aug 24;12(17):2167. doi: 10.3390/ani12172167.
The male reproductive system develops from a minimally functioning gonad and nonfunctioning accessory sex glands in the neonate; sex steroids, presumed to be primary influencers of these changes, have been characterized in multiple species. This study focused on the expression of the androgen receptor as the principal mediator of androgen-induced signaling; the 5α reductase enzyme that converts testosterone to the more active dihydrotestosterone; and colony stimulating factor 1, a mediator of macrophage influence on organ development in the pig. The time points chosen to evaluate normal developmental changes during the juvenile and prepubertal intervals included the inflection time points of 6.5 weeks of age at the nadir of circulating estradiol and testosterone concentrations in juveniles, and 11 weeks of age, when these concentrations begin to increase. The role of sex steroid signaling in the regulation of gene expression was evaluated by the blockade of androgen and estrogen receptors and reduction in endogenous estrogens. Expression of colony stimulating factor 1 in the testes gradually decreased during development; developmental profiles in the prostate and seminal vesicles were clearly different. Interference with sex steroid signaling had no effect on the expression of these three genes in testicular tissue and minimal and transient effects in prostate and seminal vesicles.
雄性生殖系统由新生儿中功能最低的性腺和无功能的附属性腺发育而来;性类固醇被认为是这些变化的主要影响因素,已在多个物种中得到表征。本研究聚焦于雄激素受体作为雄激素诱导信号传导的主要介质的表达;将睾酮转化为活性更强的双氢睾酮的5α还原酶;以及集落刺激因子1,它是巨噬细胞对猪器官发育影响的介质。为评估幼年和青春期前正常发育变化而选择的时间点包括:6.5周龄时,即幼年动物循环雌二醇和睾酮浓度最低点时的拐点;以及11周龄时,此时这些浓度开始上升。通过阻断雄激素和雌激素受体以及降低内源性雌激素来评估性类固醇信号在基因表达调控中的作用。睾丸中集落刺激因子1的表达在发育过程中逐渐降低;前列腺和精囊中的发育模式明显不同。干扰性类固醇信号对睾丸组织中这三个基因的表达没有影响,对前列腺和精囊中的表达有最小且短暂的影响。