Register      Login
Reproduction, Fertility and Development Reproduction, Fertility and Development Society
Vertebrate reproductive science and technology

Articles citing this paper

Reproductive performance in female ClockΔ19 mutant mice

David J. Kennaway A B , Michael J. Boden A and Athena Voultsios A
+ Author Affiliations
- Author Affiliations

A Department of Obstetrics and Gynaecology, University of Adelaide, Medical School, Frome Road, Adelaide, SA 5005, Australia.

B Corresponding author. Email: david.kennaway@adelaide.edu.au

Reproduction, Fertility and Development 16(8) 801-810 https://doi.org/10.1071/RD04023
Submitted: 23 March 2004  Accepted: 2 November 2004   Published: 13 January 2005



55 articles found in Crossref database.

Impaired Steroidogenesis and Implantation Failure in Bmal1−/− Mice
Ratajczak Christine K., Boehle Katie L., Muglia Louis J.
Endocrinology. 2009 150(4). p.1879
The impact of prenatal circadian rhythm disruption on pregnancy outcomes and long-term metabolic health of mice progeny
Varcoe Tamara J., Voultsios Athena, Gatford Kathryn L., Kennaway David J.
Chronobiology International. 2016 33(9). p.1171
Deregulation of the circadian clock constitutes a significant factor in tumorigenesis: a clockwork cancer. Part II.In vivostudies
Uth Kristin, Sleigh Roger
Biotechnology & Biotechnological Equipment. 2014 28(3). p.379
Low CLOCK and CRY2 in 2nd trimester human maternal blood and risk of preterm birth: a nested case-control study†
Zhou Guoli, Duong Thu V, Kasten Eric P, Hoffmann Hanne M
Biology of Reproduction. 2021 105(4). p.827
THE CROSSTALK BETWEEN PHYSIOLOGY AND CIRCADIAN CLOCK PROTEINS
Duguay David, Cermakian Nicolas
Chronobiology International. 2009 26(8). p.1479
Genetic suppression of the circadian Clock mutation by the melatonin biosynthesis pathway
Shimomura Kazuhiro, Lowrey Phillip L., Vitaterna Martha Hotz, Buhr Ethan D., Kumar Vivek, Hanna Peter, Omura Chiaki, Izumo Mariko, Low Sharon S., Barrett R. Keith, LaRue Silvia I., Green Carla B., Takahashi Joseph S.
Proceedings of the National Academy of Sciences. 2010 107(18). p.8399
Serotoninergic and Circadian Systems: Driving Mammary Gland Development and Function
Suárez-Trujillo Aridany, Casey Theresa M.
Frontiers in Physiology. 2016 7
Circadian clocks and their role in lactation competence
Casey TM, Plaut K, Boerman J
Domestic Animal Endocrinology. 2022 78 p.106680
High-Throughput Sequencing Reveals Hypothalamic MicroRNAs as Novel Partners Involved in Timing the Rapid Development of Chicken (Gallus gallus) Gonads
Han Wei, Zou Jianmin, Wang Kehua, Su Yijun, Zhu Yunfen, Song Chi, Li Guohui, Qu Liang, Zhang Huiyong, Liu Honglin, Sun Qing-Yuan
PLOS ONE. 2015 10(6). p.e0129738
Loss of BMAL1 in ovarian steroidogenic cells results in implantation failure in female mice
Liu Yan, Johnson Brian P., Shen Anna L., Wallisser Jacqueline A., Krentz Kathy J., Moran Susan M., Sullivan Ruth, Glover Edward, Parlow Albert F., Drinkwater Norman R., Schuler Linda A., Bradfield Christopher A.
Proceedings of the National Academy of Sciences. 2014 111(39). p.14295
Clock-dependent and system-driven oscillators interact in the suprachiasmatic nuclei to pace mammalian circadian rhythms
Abitbol Karine, Debiesse Ségolène, Molino François, Mesirca Pietro, Bidaud Isabelle, Minami Yoichi, Mangoni Matteo E., Yagita Kazuhiro, Mollard Patrice, Bonnefont Xavier, Mintz Eric M
PLOS ONE. 2017 12(10). p.e0187001
A neural circadian signal essential for ovulation is generated in the suprachiasmatic nucleus during each stage of the oestrous cycle
Silva Carlos‐Camilo, Cortés Georgina Daniela, Javier Cintia Yolanda, Flores Angélica, Domínguez Roberto
Experimental Physiology. 2020 105(2). p.258
Research Resource: Genome-Wide Profiling of Progesterone Receptor Binding in the Mouse Uterus
Rubel Cory A., Lanz Rainer B., Kommagani Ramakrishna, Franco Heather L., Lydon John P., DeMayo Francesco J.
Molecular Endocrinology. 2012 26(8). p.1428
Circadian clocks and their integration with metabolic and reproductive systems: our current understanding and its application to the management of dairy cows
Casey Theresa M, Plaut Karen
Journal of Animal Science. 2022 100(10).
Disruption of Circadian Rhythms: A Crucial Factor in the Etiology of Infertility
Sciarra Francesca, Franceschini Edoardo, Campolo Federica, Gianfrilli Daniele, Pallotti Francesco, Paoli Donatella, Isidori Andrea M., Venneri Mary Anna
International Journal of Molecular Sciences. 2020 21(11). p.3943
Female fertility does not require Bmal1 in suprachiasmatic nucleus neurons expressing arginine vasopressin, vasoactive intestinal peptide, or neuromedin-S
Tonsfeldt Karen J., Cui Laura J., Lee Jinkwon, Walbeek Thijs J., Brusman Liza E., Jin Ye, Mieda Michihiro, Gorman Michael R., Mellon Pamela L.
Frontiers in Endocrinology. 2022 13
Global But Not Gonadotrope-Specific Disruption of Bmal1 Abolishes the Luteinizing Hormone Surge Without Affecting Ovulation
Chu Adrienne, Zhu Lei, Blum Ian D., Mai Oliver, Leliavski Alexei, Fahrenkrug Jan, Oster Henrik, Boehm Ulrich, Storch Kai-Florian
Endocrinology. 2013 154(8). p.2924
In Silico, In Vitro, and In Vivo Analysis Identifies Endometrial Circadian Clock Genes in Recurrent Implantation Failure
Zhai Junyu, Li Shang, Hu Jingwen, Gao Minzhi, Sun Yun, Chen Zi-Jiang, Giudice Linda C, Du Yanzhi
The Journal of Clinical Endocrinology & Metabolism. 2021 106(7). p.2077
Clock gene expression in gravid uterus and extra-embryonic tissues during late gestation in the mouse
Ratajczak Christine K., Herzog Erik D., Muglia Louis J.
Reproduction, Fertility and Development. 2010 22(5). p.743
Functional central rhythmicity and light entrainment, but not liver and muscle rhythmicity, are Clock independent
Kennaway David J., Owens Julie A., Voultsios Athena, Varcoe Tamara J.
American Journal of Physiology-Regulatory, Integrative and Comparative Physiology. 2006 291(4). p.R1172
Attenuating Effect of Clock Mutation on Triglyceride Contents in the ICR Mouse Liver under a High-Fat Diet
Kudo Takashi, Tamagawa Toru, Kawashima Mihoko, Mito Natsuko, Shibata Shigenobu
Journal of Biological Rhythms. 2007 22(4). p.312
Reproductive biology of female Bmal1 null mice
Boden Michael J, Varcoe Tamara J, Voultsios Athena, Kennaway David J
REPRODUCTION. 2010 139(6). p.1077
Evidence of a molecular clock in the ovine ovary and the influence of photoperiod
Murphy B.A., Blake C.M., Brown J.A., Martin A.-M., Forde N., Sweeney L.M., Evans A.C.O.
Theriogenology. 2015 84(2). p.208
REV-ERBα regulates Fgf21 expression in the liver via hepatic nuclear factor 6
Chavan Rohit, Preitner Nadia, Okabe Takashi, Strittmatter Laureen Mansencal, Xu Cheng, Ripperger Jürgen A., Pitteloud Nelly, Albrecht Urs
Biology Open. 2016
Shiftwork and Light at Night Negatively Impact Molecular and Endocrine Timekeeping in the Female Reproductive Axis in Humans and Rodents
Yaw Alexandra, McLane-Svoboda Autumn, Hoffmann Hanne
International Journal of Molecular Sciences. 2020 22(1). p.324
Core circadian clock transcription factor BMAL1 regulates mammary epithelial cell growth, differentiation, and milk component synthesis
Casey Theresa, Suarez-Trujillo Aridany, Cummings Shelby, Huff Katelyn, Crodian Jennifer, Bhide Ketaki, Aduwari Clare, Teeple Kelsey, Shamay Avi, Mabjeesh Sameer J., San Miguel Phillip, Thimmapuram Jyothi, Plaut Karen, Safayi Sina
PLOS ONE. 2021 16(8). p.e0248199
Chronobiology: Biological Timing in Health and Disease (2013)
Evans Jennifer A., Davidson Alec J.
CLOCK regulates mammary epithelial cell growth and differentiation
Casey Theresa, Crodian Jennifer, Suárez-Trujillo Aridany, Erickson Emily, Weldon Bethany, Crow Kristi, Cummings Shelby, Chen Yulu, Shamay Avi, Mabjeesh Sameer J., Plaut Karen
American Journal of Physiology-Regulatory, Integrative and Comparative Physiology. 2016 311(6). p.R1125
Circadian rhythms and fertility
Kennaway David J., Boden Michael J., Varcoe Tamara J.
Molecular and Cellular Endocrinology. 2012 349(1). p.56
Transcriptome analysis reveals disruption of circadian rhythms in late gestation dairy cows may increase risk for fatty liver and reduced mammary remodeling
Casey Theresa, Suarez-Trujillo Aridany M., McCabe Conor, Beckett Linda, Klopp Rebecca, Brito Luiz, Rocha Malacco Victor Marco, Hilger Susan, Donkin Shawn S., Boerman Jacquelyn, Plaut Karen
Physiological Genomics. 2021 53(11). p.441
Circadian aspects of mammalian parturition: A review
Olcese James
Molecular and Cellular Endocrinology. 2012 349(1). p.62
The Laboratory Mouse (2012)
Steinlechner Stephan
Developmental and reproductive performance in circadian mutant mice
Dolatshad H., Campbell E.A., O’Hara L., Maywood E.S., Hastings M.H., Johnson M.H.
Human Reproduction. 2006 21(1). p.68
Loss of Magel2, a Candidate Gene for Features of Prader-Willi Syndrome, Impairs Reproductive Function in Mice
Mercer Rebecca E., Wevrick Rachel, Lewin Alfred
PLoS ONE. 2009 4(1). p.e4291
Expression of the clock genes Per1 and Bmal1 during follicle development in the rat ovary. Effects of gonadotropin stimulation and hypophysectomy
Gräs Søren, Georg Birgitte, Jørgensen Henrik L., Fahrenkrug Jan
Cell and Tissue Research. 2012 350(3). p.539
Clocks on top: The role of the circadian clock in the hypothalamic and pituitary regulation of endocrine physiology
Tonsfeldt Karen J., Chappell Patrick E.
Molecular and Cellular Endocrinology. 2012 349(1). p.3
Circadian clock genes in reproductive tissues and the developing conceptus
Dolatshad Hamid, Davis Fred C., Johnson Martin H.
Reproduction, Fertility and Development. 2009 21(1). p.1
Circle(s) of Life: The Circadian Clock from Birth to Death
Olejniczak Iwona, Pilorz Violetta, Oster Henrik
Biology. 2023 12(3). p.383
Induction ofPER1mRNA expression in immortalized gonadotropes by gonadotropin‐releasing hormone (GnRH): Involvement of protein kinase C and MAP kinase signaling
Olcese James, Sikes Holly E., Resuehr David
Chronobiology International. 2006 23(1-2). p.143
Mammary core clock gene expression is impacted by photoperiod exposure during the dry period in goats
Casey Theresa M., Plaut Karen, Kalyesubula Mugagga, Shamay Avi, Sabastian Chris, Wein Yosi, Bar-Shira Enav, Reicher Naama, Mabjeesh Sameer. J.
Journal of Applied Animal Research. 2018 46(1). p.1214
Chronic prepartum light-dark phase shifts in cattle disrupt circadian clocks, decrease insulin sensitivity and mammary development, and are associated with lower milk yield through 60 days postpartum
McCabe C.J., Suarez-Trujillo A., Teeple K.A., Casey T.M., Boerman J.P.
Journal of Dairy Science. 2021 104(2). p.2422
Deoxycorticosterone/Salt-Mediated Cardiac Inflammation and Fibrosis Are Dependent on Functional CLOCK Signaling in Male Mice
Fletcher Elizabeth K, Morgan James, Kennaway David R, Bienvenu Laura A, Rickard Amanda J, Delbridge Lea M D, Fuller Peter J, Clyne Colin D, Young Morag J
Endocrinology. 2017 158(9). p.2906
Absence of Apparent Circadian Rhythms of Gonadotropins and Free α-Subunit in Postmenopausal Women: Evidence for Distinct Regulation Relative to Other Hormonal Rhythms
Lavoie Helene B., Marsh Erica E., Hall Janet E.
Journal of Biological Rhythms. 2006 21(1). p.58
Disrupted Reproduction, Estrous Cycle, and Circadian Rhythms in Female Mice Deficient in Vasoactive Intestinal Peptide
Loh D.H., Kuljis D.A., Azuma L., Wu Y., Truong D., Wang H.B., Colwell C.S.
Journal of Biological Rhythms. 2014 29(5). p.355
Circadian Rhythms and Clock Genes in Reproduction: Insights From Behavior and the Female Rabbit’s Brain
Caba Mario, González-Mariscal Gabriela, Meza Enrique
Frontiers in Endocrinology. 2018 9
The Circadian Timing System and Environmental Circadian Disruption: From Follicles to Fertility
Sen Aritro, Sellix Michael T.
Endocrinology. 2016 157(9). p.3366
Comprehensive Physiology (2022)
Moeller Jacob S., Bever Savannah R., Finn Samantha L., Phumsatitpong Chayarndorn, Browne Madison F., Kriegsfeld Lance J.
E-box regulation of gonadotropin-releasing hormone (GnRH) receptor expression in immortalized gonadotrope cells
Resuehr D., Wildemann U., Sikes H., Olcese J.
Molecular and Cellular Endocrinology. 2007 278(1-2). p.36
Circadian clocks in the ovary
Sellix Michael T., Menaker Michael
Trends in Endocrinology & Metabolism. 2010 21(10). p.628
Oestrogen Induces Rhythmic Expression of the Kisspeptin-1 Receptor GPR54 in Hypothalamic Gonadotrophin-Releasing Hormone-Secreting GT1-7 Cells
Tonsfeldt K. J., Goodall C. P., Latham K. L., Chappell P. E.
Journal of Neuroendocrinology. 2011 23(9). p.823
Circadian regulation of reproduction: From gamete to offspring
Boden M.J., Varcoe T.J., Kennaway D.J.
Progress in Biophysics and Molecular Biology. 2013 113(3). p.387
Generation of myometrium-specific Bmal1 knockout mice for parturition analysis
Ratajczak Christine K., Asada Minoru, Allen Gregg C., McMahon Douglas G., Muglia Lisa M., Smith Donté, Bhattacharyya Sandip, Muglia Louis J.
Reproduction, Fertility and Development. 2012 24(5). p.759
Increased Anxiety in Offspring Reared by Circadian Clock Mutant Mice
Koizumi Hiroko, Kurabayashi Nobuhiro, Watanabe Yuto, Sanada Kamon, Yamazaki Shin
PLoS ONE. 2013 8(6). p.e66021
Modulation of Gonadotrophin‐Releasing Hormone Secretion by an Endogenous Circadian Clock
Chappell P. E., Goodall C. P., Tonsfeldt K. J., White R. S., Bredeweg E., Latham K. L.
Journal of Neuroendocrinology. 2009 21(4). p.339
Evidence for clock genes circadian rhythms in human full-term placenta
Pérez Silvia, Murias Lucía, Fernández-Plaza Catalina, Díaz Irene, González Celestino, Otero Jesús, Díaz Elena
Systems Biology in Reproductive Medicine. 2015 61(6). p.360

Committee on Publication Ethics


Abstract Export Citation Get Permission