Hernández Vito S, Zetter Mario A, Hernández-Pérez Oscar R, Hernández-González Rafael, Camacho-Arroyo Ignacio, Millar Robert P, Eiden Lee E, Zhang Limei
Department of Physiology, School of Medicine, National Autonomous University of Mexico (UNAM), Mexico City, Mexico.
Section on Molecular Neuroscience, NIMH-IRP, NIH, Bethesda, Maryland, USA.
J Neuroendocrinol. 2025 May;37(5):e70019. doi: 10.1111/jne.70019. Epub 2025 Mar 18.
Kisspeptinergic signaling is well-established as crucial for the regulation of reproduction, but its potential broader role in brain function is less understood. This study investigates the distribution and chemotyping of kisspeptin-expressing neurons within the mouse brain. RNAscope single, dual, and multiplex in situ hybridization methods were used to assess kisspeptin mRNA (Kiss1) expression and its co-expression with other neuropeptides, excitatory and inhibitory neurotransmitter markers, and sex steroid receptors in wild-type intact and gonadectomized young adult mice. Seven distinct kisspeptin neuronal chemotypes were characterized, including two novel kisspeptin-expressing groups described for the first time, that is, the Kiss1 population in the ventral premammillary nucleus and the nucleus of the solitary tract. Kiss1 mRNA was also observed to localize in both somatic and dendritic compartments of hypothalamic neurons. High androgen receptor expression and changes in medial amygdala and septo-hypothalamic Kiss1 expression following GDX in males, but not in females, suggest a role for androgen receptors in regulating kisspeptin signaling. This study provides a detailed chemoanatomical map of kisspeptin-expressing neurons, highlighting their potential functional diversity. The discovery of a new kisspeptin-expressing group and gonadectomy-induced changes in Kiss1 expression patterns suggest broader roles for kisspeptin in brain functions beyond those of reproduction.
亲吻素信号通路已被确认为对生殖调节至关重要,但其在脑功能中潜在的更广泛作用尚鲜为人知。本研究调查了小鼠脑内表达亲吻素的神经元的分布和化学分型。运用RNAscope单、双和多重原位杂交方法,评估野生型完整和去势成年幼鼠中亲吻素mRNA(Kiss1)的表达及其与其他神经肽、兴奋性和抑制性神经递质标志物以及性类固醇受体的共表达情况。鉴定出七种不同的亲吻素神经元化学分型,包括首次描述的两个新的表达亲吻素的群体,即腹侧乳头前核和孤束核中的Kiss1群体。还观察到Kiss1 mRNA定位于下丘脑神经元的胞体和树突区室。雄性而非雌性在去势后内侧杏仁核和隔区 - 下丘脑Kiss1表达出现高雄激素受体表达及变化,提示雄激素受体在调节亲吻素信号通路中发挥作用。本研究提供了表达亲吻素的神经元的详细化学解剖图谱,突出了它们潜在的功能多样性。新的表达亲吻素群体的发现以及去势诱导的Kiss1表达模式变化表明,亲吻素在生殖之外的脑功能中具有更广泛的作用。