Literature DB >> 22824757

Clock gene expression in mouse kidney and testis: analysis of periodical and dynamical patterns.

G Mazzoccoli1, M Francavilla, F Giuliani, F Aucella, M Vinciguerra, V Pazienza, A Piepoli, G Benegiamo, S Liu, Y Cai.   

Abstract

Molecular clocks drive circadian rhythmicity of cellular functions in peripheral tissues and organs, kidney included, whereas in the testis this clockwork seems constitutively active. We have evaluated the periodicity and the dynamics of expression of the clock genes BMAL1, CLOCK, PER1, PER2, CRY1, CRY2 and REV ERBalpha over 24 h in the kidney and testis using a mouse model. The periodicity was explored by single cosinor, and dynamics were explored by calculation of fractional variations of gene expression related to time intervals. Kidney and testis were harvested at 4-h intervals over a 24-h period from eight-week-old C57BL/6 male mice housed individually on a 12 h light (L)-dark (D) cycle (lights on at 08:00 h; lights off at 20:00 h) and mRNA was extracted and analyzed by Quantitative Real-time Reverse Transcription PCR. A statistically significant difference was evidenced between kidney and testis for the original values of expression level of BMAL1, PER1, PER2 CRY1, CRY2 and REV ERBα. A statistically significant difference was evidenced between kidney and testis for the fractional variation of BMAL1, PER2, CRY1, CRY2 and REV ERBα. A significant 24-h rhythmic component was found for BMAL1, CLOCK, PER1, PER2, CRY1, CRY2 and REV ERBα in the kidney, whereas no core clock gene showed circadian rhythmicity in the testis. Fractional variations provided significant circadian rhythms for BMAL1, PER2, CRY, CRY2 and REV ERBα in the kidney, whereas in the testis the fractional variation calculations showed no circadian rhythmicity, but quantitative comparison showed statistically significant differences in only 16.7 percent of the time points studied. In conclusion, in the kidney the clock gene machinery shows circadian oscillation of mRNA levels and time-related variations in the rate of change of clock gene expression. In the testis the clock genes do not show circadian rhythmicity of expression and the dynamics of variation are not characterized by a periodical pattern, but are quantitatively similar to those observed in the kidney. These data suggest that in the testis the clock gene machinery shows a tissue-specific pattern of function and clock genes may play a different role in the testis with regard to other peripheral tissues, maybe in relation to the presence of developmental and differentiation phenomena.

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Year:  2012        PMID: 22824757

Source DB:  PubMed          Journal:  J Biol Regul Homeost Agents        ISSN: 0393-974X            Impact factor:   1.711


  6 in total

Review 1.  Molecular bases of circadian rhythmicity in renal physiology and pathology.

Authors:  Olivier Bonny; Manlio Vinciguerra; Michelle L Gumz; Gianluigi Mazzoccoli
Journal:  Nephrol Dial Transplant       Date:  2013-07-30       Impact factor: 5.992

2.  The biological clock and the molecular basis of lysosomal storage diseases.

Authors:  Gianluigi Mazzoccoli; Tommaso Mazza; Manlio Vinciguerra; Stefano Castellana; Maurizio Scarpa
Journal:  JIMD Rep       Date:  2015-01-13

Review 3.  Flexible clock systems: adjusting the temporal programme.

Authors:  Daan R van der Veen; Sjaak J Riede; Paul D Heideman; Michaela Hau; Vincent van der Vinne; Roelof A Hut
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2017-11-19       Impact factor: 6.237

Review 4.  Circadian Clock Genes in Diabetic Kidney Disease (DKD).

Authors:  Olanrewaju A Olaoye; Sarah H Masten; Rajesh Mohandas; Michelle L Gumz
Journal:  Curr Diab Rep       Date:  2019-06-06       Impact factor: 4.810

Review 5.  The circadian clock and the hypoxic response pathway in kidney cancer.

Authors:  Gianluigi Mazzoccoli; Angelo De Cata; Ada Piepoli; Manlio Vinciguerra
Journal:  Tumour Biol       Date:  2013-08-14

6.  Fish Oil Ameliorates High-Fat Diet Induced Male Mouse Reproductive Dysfunction via Modifying the Rhythmic Expression of Testosterone Synthesis Related Genes.

Authors:  Hualin Wang; Yazheng Cai; Yang Shao; Xifeng Zhang; Na Li; Hongyu Zhang; Zhiguo Liu
Journal:  Int J Mol Sci       Date:  2018-04-29       Impact factor: 5.923

  6 in total

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