Published in Adv Exp Med Biol on January 01, 2013
Relative Importance of the Arcuate and Anteroventral Periventricular Kisspeptin Neurons in Control of Puberty and Reproductive Function in Female Rats. Endocrinology (2015) 0.85
Vasoactive intestinal peptide modulation of the steroid-induced LH surge involves kisspeptin signaling in young but not in middle-aged female rats. Endocrinology (2014) 0.81
Circadian Control of the Female Reproductive Axis Through Gated Responsiveness of the RFRP-3 System to VIP Signaling. Endocrinology (2015) 0.78
Excitability and Burst Generation of AVPV Kisspeptin Neurons Are Regulated by the Estrous Cycle Via Multiple Conductances Modulated by Estradiol Action. eNeuro (2016) 0.76
Kisspeptin-10 modulates the proliferation and differentiation of the rhesus monkey derived stem cell line: R366.4. ScientificWorldJournal (2013) 0.75
Coordination of circadian timing in mammals. Nature (2002) 18.47
A serum shock induces circadian gene expression in mammalian tissue culture cells. Cell (1998) 10.92
Phototransduction by retinal ganglion cells that set the circadian clock. Science (2002) 10.42
Melanopsin-containing retinal ganglion cells: architecture, projections, and intrinsic photosensitivity. Science (2002) 9.08
Transplanted suprachiasmatic nucleus determines circadian period. Science (1990) 5.55
Comparative distribution of estrogen receptor-alpha and -beta mRNA in the rat central nervous system. J Comp Neurol (1997) 5.43
System-level identification of transcriptional circuits underlying mammalian circadian clocks. Nat Genet (2005) 5.10
Rhythmic CLOCK-BMAL1 binding to multiple E-box motifs drives circadian Dbp transcription and chromatin transitions. Nat Genet (2006) 5.08
Positional syntenic cloning and functional characterization of the mammalian circadian mutation tau. Science (2000) 4.94
Circadian rhythms in drinking behavior and locomotor activity of rats are eliminated by hypothalamic lesions. Proc Natl Acad Sci U S A (1972) 4.65
Loss of a circadian adrenal corticosterone rhythm following suprachiasmatic lesions in the rat. Brain Res (1972) 4.58
Bioluminescence imaging of individual fibroblasts reveals persistent, independently phased circadian rhythms of clock gene expression. Curr Biol (2004) 4.49
Regulation of Kiss1 gene expression in the brain of the female mouse. Endocrinology (2005) 4.48
Melanopsin (Opn4) requirement for normal light-induced circadian phase shifting. Science (2002) 4.24
A role for kisspeptins in the regulation of gonadotropin secretion in the mouse. Endocrinology (2004) 4.24
A molecular mechanism regulating rhythmic output from the suprachiasmatic circadian clock. Cell (1999) 4.08
Kisspeptin activation of gonadotropin releasing hormone neurons and regulation of KiSS-1 mRNA in the male rat. Neuroendocrinology (2005) 3.52
Role of melanopsin in circadian responses to light. Science (2002) 3.12
Definition of estrogen receptor pathway critical for estrogen positive feedback to gonadotropin-releasing hormone neurons and fertility. Neuron (2006) 3.04
Postnatal development of kisspeptin neurons in mouse hypothalamus; sexual dimorphism and projections to gonadotropin-releasing hormone neurons. Endocrinology (2006) 2.95
A diffusible coupling signal from the transplanted suprachiasmatic nucleus controlling circadian locomotor rhythms. Nature (1996) 2.92
Photoreceptive net in the mammalian retina. This mesh of cells may explain how some blind mice can still tell day from night. Nature (2002) 2.67
Peripheral administration of metastin induces marked gonadotropin release and ovulation in the rat. Biochem Biophys Res Commun (2004) 2.55
Differential regulation of KiSS-1 mRNA expression by sex steroids in the brain of the male mouse. Endocrinology (2005) 2.50
Kiss1 neurons in the forebrain as central processors for generating the preovulatory luteinizing hormone surge. J Neurosci (2006) 2.42
Effects of KiSS-1 peptide, the natural ligand of GPR54, on follicle-stimulating hormone secretion in the rat. Endocrinology (2005) 2.23
Circadian clock mutation disrupts estrous cyclicity and maintenance of pregnancy. Curr Biol (2004) 2.17
A novel avian hypothalamic peptide inhibiting gonadotropin release. Biochem Biophys Res Commun (2000) 2.16
Involvement of anteroventral periventricular metastin/kisspeptin neurons in estrogen positive feedback action on luteinizing hormone release in female rats. J Reprod Dev (2007) 2.14
Suprachiasmatic nucleus organization. Cell Tissue Res (2002) 2.13
New neuropeptides containing carboxy-terminal RFamide and their receptor in mammals. Nat Cell Biol (2000) 2.05
The circadian visual system, 2005. Brain Res Rev (2005) 1.98
Identification and characterization of a gonadotropin-inhibitory system in the brains of mammals. Proc Natl Acad Sci U S A (2006) 1.97
Characterization of the potent luteinizing hormone-releasing activity of KiSS-1 peptide, the natural ligand of GPR54. Endocrinology (2004) 1.97
Forced desynchronization of dual circadian oscillators within the rat suprachiasmatic nucleus. Curr Biol (2004) 1.97
Female reproductive maturation in the absence of kisspeptin/GPR54 signaling. Nat Neurosci (2011) 1.96
Rhythmic PER abundance defines a critical nodal point for negative feedback within the circadian clock mechanism. Mol Cell (2009) 1.79
A 24-hour periodicity in the "LH-release apparatus" of female rats, disclosed by barbiturate sedation. Endocrinology (1950) 1.67
Circadian rhythm of firing rate recorded from single cells in the rat suprachiasmatic brain slice. Brain Res (1982) 1.63
Diurnal and estradiol-dependent changes in gonadotropin-releasing hormone neuron firing activity. Proc Natl Acad Sci U S A (2005) 1.63
Rat RFamide-related peptide-3 stimulates GH secretion, inhibits LH secretion, and has variable effects on sex behavior in the adult male rat. Horm Behav (2006) 1.60
Characterization of the potent gonadotropin-releasing activity of RF9, a selective antagonist of RF-amide-related peptides and neuropeptide FF receptors: physiological and pharmacological implications. Endocrinology (2010) 1.59
Circadian rhythmicity restored by neural transplant. Immunocytochemical characterization of the graft and its integration with the host brain. J Neurosci (1987) 1.58
Discrete lesions reveal functional heterogeneity of suprachiasmatic structures in regulation of gonadotropin secretion in the female rat. Neuroendocrinology (1982) 1.55
Topographic organization of suprachiasmatic nucleus projection neurons. J Comp Neurol (2001) 1.54
Antiphase oscillation of the left and right suprachiasmatic nuclei. Science (2000) 1.54
The vasopressinergic innervation of the brain in normal and castrated rats. J Comp Neurol (1985) 1.45
Effects of suprachiasmatic transplants on circadian rhythms of neuroendocrine function in golden hamsters. Endocrinology (1999) 1.44
Gonadotropin-releasing hormone surge in pro-oestrous rats. Nature (1976) 1.43
Circadian Transcription. Thinking outside the E-Box. J Biol Chem (2002) 1.41
Circadian regulation of Kiss1 neurons: implications for timing the preovulatory gonadotropin-releasing hormone/luteinizing hormone surge. Endocrinology (2009) 1.39
The neurobiology of preovulatory and estradiol-induced gonadotropin-releasing hormone surges. Endocr Rev (2010) 1.37
Cell autonomy and synchrony of suprachiasmatic nucleus circadian oscillators. Trends Neurosci (2011) 1.36
Circadian expression of the steroid 15 alpha-hydroxylase (Cyp2a4) and coumarin 7-hydroxylase (Cyp2a5) genes in mouse liver is regulated by the PAR leucine zipper transcription factor DBP. Mol Cell Biol (1999) 1.34
Environmental control of kisspeptin: implications for seasonal reproduction. Endocrinology (2006) 1.33
Efferent projections of the suprachiasmatic nucleus: II. Studies using retrograde transport of fluorescent dyes and simultaneous peptide immunohistochemistry in the rat. J Comp Neurol (1987) 1.31
Circadian gene expression regulates pulsatile gonadotropin-releasing hormone (GnRH) secretory patterns in the hypothalamic GnRH-secreting GT1-7 cell line. J Neurosci (2003) 1.30
Alterations in RFamide-related peptide expression are coordinated with the preovulatory luteinizing hormone surge. Endocrinology (2008) 1.29
Evidence for a direct neuronal pathway from the suprachiasmatic nucleus to the gonadotropin-releasing hormone system: combined tracing and light and electron microscopic immunocytochemical studies. J Comp Neurol (1997) 1.29
Organization of suprachiasmatic nucleus projections in Syrian hamsters (Mesocricetus auratus): an anterograde and retrograde analysis. J Comp Neurol (2004) 1.29
A daily signal for the LH surge in the rat. Endocrinology (1975) 1.28
Hypophysiotropic role of RFamide-related peptide-3 in the inhibition of LH secretion in female rats. J Endocrinol (2008) 1.27
Vasopressin induces a luteinizing hormone surge in ovariectomized, estradiol-treated rats with lesions of the suprachiasmatic nucleus. Neuroscience (1999) 1.27
Effects of discrete lesions of preoptic and suprachiasmatic structures in the female rat. Alterations in the feedback regulation of gonadotropin secretion. Neuroendocrinology (1980) 1.26
Minireview: timely ovulation: circadian regulation of the female hypothalamo-pituitary-gonadal axis. Endocrinology (2005) 1.25
Cellular localization of vasopressin V1a receptor messenger ribonucleic acid in adult male rat brain, pineal, and brain vasculature. Endocrinology (1994) 1.25
Role of estrogen as initiator of daily LH surges in the ovariectomized rat. Endocrinology (1975) 1.24
Kisspeptin mediates the photoperiodic control of reproduction in hamsters. Curr Biol (2006) 1.23
Localization of oestrogen receptors in preoptic neurons containing neurotensin but not tyrosine hydroxylase, cholecystokinin or luteinizing hormone-releasing hormone in the male and female rat. Neuroscience (1992) 1.20
Lateralization of circadian pacemaker output: Activation of left- and right-sided luteinizing hormone-releasing hormone neurons involves a neural rather than a humoral pathway. J Neurosci (2003) 1.20
Projections of the sexually dimorphic anteroventral periventricular nucleus in the female rat. J Comp Neurol (1997) 1.18
Two antiphase oscillations occur in each suprachiasmatic nucleus of behaviorally split hamsters. J Neurosci (2005) 1.18
Evidence for suprachiasmatic vasopressin neurones innervating kisspeptin neurones in the rostral periventricular area of the mouse brain: regulation by oestrogen. J Neuroendocrinol (2010) 1.17
Identification, expression, and physiological functions of Siberian hamster gonadotropin-inhibitory hormone. Endocrinology (2011) 1.14
Critical role for estrogen receptor alpha in negative feedback regulation of gonadotropin-releasing hormone mRNA expression in the female mouse. Neuroendocrinology (2003) 1.14
Minireview: The circadian clockwork of the suprachiasmatic nuclei--analysis of a cellular oscillator that drives endocrine rhythms. Endocrinology (2007) 1.13
The regulation of neuroendocrine function: Timing is everything. Horm Behav (2006) 1.12
In vivo antisense antagonism of vasoactive intestinal peptide in the suprachiasmatic nuclei causes aging-like changes in the estradiol-induced luteinizing hormone and prolactin surges. Endocrinology (1996) 1.11
A novel G protein-coupled receptor for gonadotropin-inhibitory hormone in the Japanese quail (Coturnix japonica): identification, expression and binding activity. J Endocrinol (2005) 1.11
Cells expressing RFamide-related peptide-1/3, the mammalian gonadotropin-inhibitory hormone orthologs, are not hypophysiotropic neuroendocrine neurons in the rat. Endocrinology (2008) 1.11
Central and peripheral effects of RFamide-related peptide-3 on luteinizing hormone and prolactin secretion in rats. Endocrinology (2008) 1.11
Shift work, nitrous oxide exposure and subfertility among Swedish midwives. Int J Epidemiol (1996) 1.10
Aging alters the rhythmic expression of vasoactive intestinal polypeptide mRNA but not arginine vasopressin mRNA in the suprachiasmatic nuclei of female rats. J Neurosci (1998) 1.08
The excitatory peptide kisspeptin restores the luteinizing hormone surge and modulates amino acid neurotransmission in the medial preoptic area of middle-aged rats. Endocrinology (2009) 1.07
The suprachiasmatic area in the female hamster projects to neurons containing estrogen receptors and GnRH. Neuroreport (1995) 1.06
Circadian control of kisspeptin and a gated GnRH response mediate the preovulatory luteinizing hormone surge. Endocrinology (2010) 1.06
Circadian organization of the estrous cycle of the golden hamster. Proc Natl Acad Sci U S A (1976) 1.05
Vasoactive intestinal polypeptide can excite gonadotropin-releasing hormone neurons in a manner dependent on estradiol and gated by time of day. Endocrinology (2008) 1.04
Suppression of spontaneous LH surges in estrogen-treated ovariectomized rats by microimplants of antiestrogens into the preoptic brain. Brain Res (1989) 1.04
Localization of the VIP2 receptor protein on GnRH neurons in the female rat. Endocrinology (2000) 1.03
Estrogen-receptive neurons in the anteroventral periventricular nucleus are synaptic targets of the suprachiasmatic nucleus and peri-suprachiasmatic region. Brain Res (1995) 1.03
Multiple circadian oscillators regulate the timing of behavioral and endocrine rhythms in female golden hamsters. Science (1985) 1.02
Discovery and evolutionary history of gonadotrophin-inhibitory hormone and kisspeptin: new key neuropeptides controlling reproduction. J Neuroendocrinol (2010) 1.02
Preferential induction of c-fos immunoreactivity in vasoactive intestinal polypeptide-innervated gonadotropin-releasing hormone neurons during a steroid-induced luteinizing hormone surge in the female rat. Endocrinology (1994) 1.01
Age-related LH surge dysfunction correlates with reduced responsiveness of hypothalamic anteroventral periventricular nucleus kisspeptin neurons to estradiol positive feedback in middle-aged rats. Neuropharmacology (2009) 1.00
Fos-induction in gonadotropin-releasing hormone neurons receiving vasoactive intestinal polypeptide innervation is reduced in middle-aged female rats. Biol Reprod (2001) 1.00
The stimulatory effect of vasopressin on the luteinizing hormone surge in ovariectomized, estradiol-treated rats is time-dependent. Brain Res (2001) 1.00
RFamide-related peptide-3 receptor gene expression in GnRH and kisspeptin neurons and GnRH-dependent mechanism of action. Endocrinology (2012) 0.99
The direct retinal projection to VIP neuronal elements in the rat SCN. Brain Res Bull (1993) 0.99
Stimulatory effect of RFRP-3 on the gonadotrophic axis in the male Syrian hamster: the exception proves the rule. Endocrinology (2012) 0.99