Literature DB >> 21363930

Regulation of Kiss1 expression by sex steroids in the amygdala of the rat and mouse.

Joshua Kim1, Sheila J Semaan, Donald K Clifton, Robert A Steiner, Sangeeta Dhamija, Alexander S Kauffman.   

Abstract

Kisspeptin (encoded by the Kiss1 gene) is an important regulator of reproduction. In rodents, Kiss1 is expressed in two hypothalamic regions, the arcuate nucleus and anteroventral periventricular/ periventricular continuum, where it is regulated by sex steroids. However, the distribution, regulation, and functional significance of neural kisspeptin outside of the hypothalamus have not been studied and are poorly understood. Here, we report the expression of Kiss1 in the amygdala, predominantly in the medial nucleus of the amygdala (MeA), a region implicated in social and emotional behaviors as well as various aspects of reproduction. In gonadally intact rats and mice, Kiss1-expressing neurons were identified in the MeA of both sexes, with higher Kiss1 expression levels in adult males than females in diestrus. In rats, Kiss1 expression in the MeA changed as a function of the estrous cycle, with highest levels at proestrus. Next, we tested whether Kiss1 in the MeA is regulated by the circulating sex steroid milieu. Kiss1 levels in the MeA were low in gonadectomized mice and rats of both sexes, and treatment with either testosterone or estradiol amplified Kiss1 expression in this region. Testosterone's inductive effect on Kiss1 expression in the MeA likely occurs via estrogen receptor-dependent pathways, not through the androgen receptor, because dihydrotestosterone (a nonaromatizable androgen) did not affect MeA Kiss1 levels. Thus, in rodents, Kiss1 is expressed and regulated by sex steroids in the MeA of both sexes and may play a role in modulating reproduction or brain functions that extend beyond reproduction.

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Year:  2011        PMID: 21363930      PMCID: PMC3075940          DOI: 10.1210/en.2010-1498

Source DB:  PubMed          Journal:  Endocrinology        ISSN: 0013-7227            Impact factor:   4.736


  59 in total

1.  Kiss1 neurons in the forebrain as central processors for generating the preovulatory luteinizing hormone surge.

Authors:  Jeremy T Smith; Simina M Popa; Donald K Clifton; Gloria E Hoffman; Robert A Steiner
Journal:  J Neurosci       Date:  2006-06-21       Impact factor: 6.167

2.  Sexual differentiation of Kiss1 gene expression in the brain of the rat.

Authors:  Alexander S Kauffman; Michelle L Gottsch; Juan Roa; Alisa C Byquist; Angelena Crown; Don K Clifton; Gloria E Hoffman; Robert A Steiner; Manuel Tena-Sempere
Journal:  Endocrinology       Date:  2007-01-04       Impact factor: 4.736

3.  Interactions between kisspeptin and neurokinin B in the control of GnRH secretion in the female rat.

Authors:  Víctor M Navarro; Juan M Castellano; Sarah M McConkey; Rafael Pineda; Francisco Ruiz-Pino; Leonor Pinilla; Donald K Clifton; Manuel Tena-Sempere; Robert A Steiner
Journal:  Am J Physiol Endocrinol Metab       Date:  2010-11-02       Impact factor: 4.310

4.  Involvement of anteroventral periventricular metastin/kisspeptin neurons in estrogen positive feedback action on luteinizing hormone release in female rats.

Authors:  Sachika Adachi; Shunji Yamada; Yoshihiro Takatsu; Hisanori Matsui; Mika Kinoshita; Kenji Takase; Hitomi Sugiura; Tetsuya Ohtaki; Hirokazu Matsumoto; Yoshihisa Uenoyama; Hiroko Tsukamura; Kinji Inoue; Kei-Ichiro Maeda
Journal:  J Reprod Dev       Date:  2007-01-10       Impact factor: 2.214

5.  Release of gonadotropins induced by amygdaloid stimulation in the rat.

Authors:  M E Velasco; S Taleisnik
Journal:  Endocrinology       Date:  1969-01       Impact factor: 4.736

6.  Hypothalamic expression of KISS1 and gonadotropin inhibitory hormone genes during the menstrual cycle of a non-human primate.

Authors:  Jeremy T Smith; Muhammad Shahab; Alda Pereira; K-Y Francis Pau; Iain J Clarke
Journal:  Biol Reprod       Date:  2010-06-23       Impact factor: 4.285

7.  Sex difference in Fos induced by male urine in medial amygdala-projecting accessory olfactory bulb mitral cells of mice.

Authors:  Ningdong Kang; Amy Janes; Michael J Baum; James A Cherry
Journal:  Neurosci Lett       Date:  2006-01-18       Impact factor: 3.046

8.  Hypertrophy and increased kisspeptin gene expression in the hypothalamic infundibular nucleus of postmenopausal women and ovariectomized monkeys.

Authors:  Adonna M Rometo; Sally J Krajewski; Mary Lou Voytko; Naomi E Rance
Journal:  J Clin Endocrinol Metab       Date:  2007-05-08       Impact factor: 5.958

9.  Kiss1-/- mice exhibit more variable hypogonadism than Gpr54-/- mice.

Authors:  Risto Lapatto; J Carl Pallais; Dongsheng Zhang; Yee-Ming Chan; Amy Mahan; Felecia Cerrato; Wei Wei Le; Gloria E Hoffman; Stephanie B Seminara
Journal:  Endocrinology       Date:  2007-06-26       Impact factor: 4.736

10.  The kisspeptin receptor GPR54 is required for sexual differentiation of the brain and behavior.

Authors:  Alexander S Kauffman; Jin Ho Park; Anika A McPhie-Lalmansingh; Michelle L Gottsch; Cristian Bodo; John G Hohmann; Maria N Pavlova; Alex D Rohde; Donald K Clifton; Robert A Steiner; Emilie F Rissman
Journal:  J Neurosci       Date:  2007-08-15       Impact factor: 6.167

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  65 in total

Review 1.  Organizational and activational effects of sex steroids on kisspeptin neuron development.

Authors:  Matthew C Poling; Alexander S Kauffman
Journal:  Front Neuroendocrinol       Date:  2012-06-19       Impact factor: 8.606

2.  Vasoactive intestinal peptide modulation of the steroid-induced LH surge involves kisspeptin signaling in young but not in middle-aged female rats.

Authors:  Alexander S Kauffman; Yan Sun; Joshua Kim; Azim R Khan; Jun Shu; Genevieve Neal-Perry
Journal:  Endocrinology       Date:  2014-03-21       Impact factor: 4.736

3.  Medial Amygdala Kiss1 Neurons Mediate Female Pheromone Stimulation of Luteinizing Hormone in Male Mice.

Authors:  Sanya Aggarwal; Celion Tang; Kristen Sing; Hyun Wook Kim; Robert P Millar; Javier A Tello
Journal:  Neuroendocrinology       Date:  2018-12-10       Impact factor: 4.914

4.  Optogenetic stimulation of kisspeptin neurones within the posterodorsal medial amygdala increases luteinising hormone pulse frequency in female mice.

Authors:  Geffen Lass; Xiao Feng Li; Ross A de Burgh; Wen He; Yanping Kang; Shel Hwa-Yeo; Lydia C Sinnett-Smith; Stephen M Manchishi; William H Colledge; Stafford Louis Lightman; Kevin T O'Byrne
Journal:  J Neuroendocrinol       Date:  2020-02-11       Impact factor: 3.627

5.  Neuroendocrinology: Kiss1 expressed in the amygdala in rodents.

Authors:  Carol Wilson
Journal:  Nat Rev Endocrinol       Date:  2011-05-03       Impact factor: 43.330

6.  Kisspeptin cell-specific PI3K signaling regulates hypothalamic kisspeptin expression and participates in the regulation of female fertility.

Authors:  Matthew Beymer; Ariel L Negrón; Guiqin Yu; Samuel Wu; Christian Mayer; Richard Z Lin; Ulrich Boehm; Maricedes Acosta-Martínez
Journal:  Am J Physiol Endocrinol Metab       Date:  2014-09-30       Impact factor: 4.310

7.  Habenular kisspeptin modulates fear in the zebrafish.

Authors:  Satoshi Ogawa; Fatima M Nathan; Ishwar S Parhar
Journal:  Proc Natl Acad Sci U S A       Date:  2014-02-24       Impact factor: 11.205

8.  Assessment of epigenetic contributions to sexually-dimorphic Kiss1 expression in the anteroventral periventricular nucleus of mice.

Authors:  Sheila J Semaan; Sangeeta Dhamija; Joshua Kim; Eric C Ku; Alexander S Kauffman
Journal:  Endocrinology       Date:  2012-02-28       Impact factor: 4.736

9.  Development of an excitatory kisspeptin projection to the oxytocin system in late pregnancy.

Authors:  Alexander J Seymour; Victoria Scott; Rachael A Augustine; Gregory T Bouwer; Rebecca E Campbell; Colin H Brown
Journal:  J Physiol       Date:  2016-10-02       Impact factor: 5.182

10.  Estrogen Stimulation of Kiss1 Expression in the Medial Amygdala Involves Estrogen Receptor-α But Not Estrogen Receptor-β.

Authors:  Shannon B Z Stephens; Navdeep Chahal; Nagambika Munaganuru; Ruby A Parra; Alexander S Kauffman
Journal:  Endocrinology       Date:  2016-08-26       Impact factor: 4.736

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