Mukherjee Arun, Haldar Chandana
Pineal Research Lab., Department of Zoology, Banaras Hindu University, Varanasi 221005, India.
J Photochem Photobiol B. 2014 Nov;140:374-80. doi: 10.1016/j.jphotobiol.2014.08.022. Epub 2014 Sep 6.
Photoperiodic modulation of melatonin membrane receptor (MT1R) expression in testis has never been reported for any seasonal breeder. Thus, the aim of the present study was to investigate the expression dynamics of MT1R in testis and its interaction with testicular steroidogenesis in a long-day breeder, Mesocricetus auratus. Hamsters were exposed to different photoperiodic conditions i.e. critical- (CP; 12.5L:11.5D); short-day- (SD; 8L:16D) and long-day- (LD; 16L:8D) for 10 weeks wherein testicular steroidogenesis, local melatonin synthesis and the expression of MT1R were analyzed. SD induced melatonin suppressed testicular steroidogenesis as evident from regressed testicular histoarchitecture, decreased expression of AR, StAR, LH-R, P₄₅₀SCC and enzyme activities of 3β- and 17β-HSD. Differential photoperiodic regulation of MT1R expression in testis suggests its involvement in photoperiodic signal transduction for seasonal adjustment of reproduction. Increased S-NAT (Serotonin N-acetyl transferase) activity and local testicular melatonin under SD condition suggest an inhibitory effect of the local melatonergic system on testicular steroidogenesis. Completely opposite responses were recorded for all the parameters analyzed when hamsters were exposed to CP or LD conditions. In conclusion, we may suggest that photoperiod via regulating circulatory and local melatonin level as well as MT1R expression in testes fine tunes the steroidogenesis and thereby, the reproductive status of male golden hamster.
对于任何季节性繁殖动物,睾丸中褪黑素膜受体(MT1R)表达的光周期调节从未有过报道。因此,本研究的目的是调查长日照繁殖动物金黄地鼠睾丸中MT1R的表达动态及其与睾丸类固醇生成的相互作用。将仓鼠暴露于不同的光周期条件下,即临界光周期(CP;12.5小时光照:11.5小时黑暗)、短日照(SD;8小时光照:16小时黑暗)和长日照(LD;16小时光照:8小时黑暗),持续10周,在此期间分析睾丸类固醇生成、局部褪黑素合成以及MT1R的表达。SD诱导的褪黑素抑制了睾丸类固醇生成,这从退化的睾丸组织结构、AR、StAR、LH-R、P₄₅₀SCC表达的降低以及3β-和17β-HSD的酶活性可以明显看出。睾丸中MT1R表达的不同光周期调节表明其参与了繁殖季节性调节的光周期信号转导。SD条件下S-NAT(血清素N-乙酰转移酶)活性和局部睾丸褪黑素的增加表明局部褪黑素能系统对睾丸类固醇生成有抑制作用。当仓鼠暴露于CP或LD条件时,所有分析参数均记录到完全相反的反应。总之,我们可以认为,光周期通过调节循环和局部褪黑素水平以及睾丸中MT1R的表达,精细调节类固醇生成,从而调节雄性金黄地鼠的生殖状态。