Biology Reference
In-Depth Information
functional Kiss1 gene. Proceedings of the National Academy of Sciences of the United States of
America , 104 , 10714-10719.
de Roux, N., Genin, E., Carel, J. C., Matsuda, F., Chaussain, J. L., & Milgrom, E. (2003).
Hypogonadotropic hypogonadism due to loss of function of the KiSS1-derived peptide
receptor GPR54. Proceedings of the National Academy of Sciences of the United States of
America , 100 , 10972-10976.
Donato, J., Jr., Cravo, R. M., Frazao, R., Gautron, L., Scott, M. M., Lachey, J., et al. (2011).
Leptin's effect on puberty in mice is relayed by the ventral premammillary nucleus and
does not require signaling in Kiss1 neurons. Journal of Clinical Investigation , 121 , 355-368.
Donato, J., Jr., Lee, C., Ratra, D., Franci, C. R., Canteras, N. S., & Elias, C. F. (2013). Lesions
of the ventral premammillary nucleus disrupt the dynamic changes in Kiss1 and GnRH
expression characteristic of the proestrus-estrus transition. Neuroscience , 241 , 67-79.
Donato, J., Jr., Silva, R. J., Sita, L. V., Lee, S., Lee, C., Lacchini, S., et al. (2009). The ventral
premammillary nucleus links fasting-induced changes in leptin levels and coordinated
luteinizing hormone secretion. Journal of Neuroscience , 29 , 5240-5250.
Elias, C. F. (2012). Leptin action in pubertal development: Recent advances and unanswered
questions. Trends in Endocrinology and Metabolism , 23 , 9-15.
Elias, C. F., & Purohit, D. (2013). Leptin signaling and circuits in puberty and fertility. Cel-
lular and Molecular Life Sciences , 70 , 841-862.
Elks, C. E., Perry, J. R., Sulem, P., Chasman, D. I., Franceschini, N., He, C., et al. (2010).
Thirty new loci for age at menarche identified by a meta-analysis of genome-wide asso-
ciation studies. Nature Genetics , 42 , 1077-1085.
Feng Li, X., Lin, Y. S., Kinsey-Jones, J. S., & O'Byrne, K. T. (2012). High-fat diet increases
LH pulse frequency and kisspeptin-neurokinin B expression in puberty-advanced female
rats. Endocrinology , 153 , 4422-4431.
Fernandez-Fernandez, R., Martini, A. C., Navarro, V. M., Castellano, J. M., Dieguez, C.,
Aguilar, E., et al. (2006). Novel signals for the integration of energy balance and repro-
duction. Molecular and Cellular Endocrinology , 254-255 , 127-132.
Fink, G. (2000). Neuroendocrine regulation of pituitary function: General principles. In
P. M. Conn & M. E. Freeman (Eds.), Neuroendocrinology in physiology and medicine
(pp. 107-134). Totowa, NJ: Humana Press.
Finn, P. D., Cunningham, M. J., Pau, K. Y., Spies, H. G., Clifton, D. K., & Steiner, R. A.
(1998). The stimulatory effect of leptin on the neuroendocrine reproductive axis of the
monkey. Endocrinology , 139 , 4652-4662.
Forbes, S., Li, X. F., Kinsey-Jones, J., & O'Byrne, K. (2009). Effects of ghrelin on Kisspeptin
mRNA expression in the hypothalamic medial preoptic area and pulsatile luteinising
hormone secretion in the female rat. Neuroscience Letters , 460 , 143-147.
Gajdos, Z. K., Henderson, K. D., Hirschhorn, J. N., & Palmert, M. R. (2010). Genetic deter-
minants of pubertal timing in the general population. Molecular and Cellular Endocrinology ,
324 , 21-29.
Garcia-Galiano, D., Pinilla, L., & Tena-Sempere, M. (2012). Sex steroids and the control of
the Kiss1 system: Developmental roles and major regulatory actions. Journal of Neuroen-
docrinology , 24 , 22-33.
Garcia-Galiano, D., van Ingen Schenau, D., Leon, S., Krajnc-Franken, M. A., Manfredi-
Lozano, M., Romero-Ruiz, A., et al. (2012). Kisspeptin signaling is indispensable for
neurokinin B, but not glutamate, stimulation of gonadotropin secretion in mice. Endo-
crinology , 153 , 316-328.
Gaytan, F., Sangiao-Alvarellos, S., Manfredi-Lozano, M., Garcia-Galiano, D., Ruiz-Pino, F.,
Romero-Ruiz, A., et al. (2013). Distinct expression patterns predict differential roles of
the miRNA-binding proteins, Lin28 and Lin28b, in the mouse testis: Studies during
postnatal development and in a model of hypogonadotropic hypogonadism. Endocrinol-
ogy , 154 , 1321-1336.
Search WWH ::




Custom Search