Literature DB >> 22124176

Insulin resistance induces a segmental difference in thoracic and abdominal aorta: differential expression of AT1 and AT2 receptors.

Pinakin Arun Karpe1, Jeena Gupta, Rickey F Marthong, Poduri Ramarao, Kulbhushan Tikoo.   

Abstract

OBJECTIVES: The study was pursued to understand and compare the vascular reactivity to angiotensin II (Ang II) and its receptor expression in thoracic and abdominal aorta under insulin resistance.
METHODS: Vascular reactivity to Ang II was recorded isometrically, AT1/AT2 receptor gene and protein expression was checked by RT-PCR and western blotting, respectively, and abundance of phospho (serine-10 Ph) H3 on promoter regions of Agtr1/Agtr2 genes was done by chromatin immunoprecipitation assay in aortic rings isolated from high fat diet (HFD)-fed rats.
RESULTS: Our functional studies showed an increased (Emax in mg/mm: Con: 319 ± 29 and HFD: 1095 ± 72, P < 0.001) and unaltered (Emax in mg/mm: Con: 299 ± 29 and HFD: 350 ± 20, mean ± SEM, n = 6) Ang II-induced contractile responses in thoracic and abdominal aorta of HFD rats, respectively, as compared to control rats. Interestingly, AT2R-mediated relaxation was increased in abdominal aorta (% relaxation: Con: 25 ± 5.3 and HFD: 76.4 ± 8.9, P < 0.001) of HFD rats but not in thoracic aorta (% relaxation: Con: 25 ± 5.2 and HFD: 32 ± 5.2, mean ± SEM, n = 6). At the molecular level, increased mRNA (∼14-folds) and protein expression (∼2.5-folds) of AT2R in abdominal aorta of HFD rats was found as compared to control rats. However, AT1R mRNA and protein expression did not show any change. Chromatin immunoprecipitation with phospho H3 showed increased abundance of ser-10 phosphorylation on Agtr1 and Agtr2 gene promoter regions in thoracic and abdominal segments, respectively. But it got decreased on Agtr2 and Agtr1 genes promoter regions in thoracic and abdominal segments, respectively.
CONCLUSION: We provide first evidence that insulin resistance induces segmental difference in thoracic and abdominal aorta and this may provide reason of heterogeneity for incidence of aneurysms.

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Year:  2012        PMID: 22124176     DOI: 10.1097/HJH.0b013e32834d9efe

Source DB:  PubMed          Journal:  J Hypertens        ISSN: 0263-6352            Impact factor:   4.844


  6 in total

1.  Long-lasting partnership between insulin resistance and endothelial dysfunction: role of metabolic memory.

Authors:  Divya Sri Priyanka Tallapragada; Pinakin Arun Karpe; Kulbhushan Tikoo
Journal:  Br J Pharmacol       Date:  2015-07-08       Impact factor: 8.739

2.  17-β Oestradiol prevents cardiovascular dysfunction in post-menopausal metabolic syndrome by affecting SIRT1/AMPK/H3 acetylation.

Authors:  Dhaval Sharad Bendale; Pinakin Arun Karpe; Richa Chhabra; Sachin Prabhakarrao Shete; Heta Shah; Kulbhushan Tikoo
Journal:  Br J Pharmacol       Date:  2013-10       Impact factor: 8.739

3.  Metformin Improves Metabolic Memory in High Fat Diet (HFD)-induced Renal Dysfunction.

Authors:  Kulbhushan Tikoo; Ekta Sharma; Venkateswara Rao Amara; Himani Pamulapati; Vaibhav Shrirang Dhawale
Journal:  J Biol Chem       Date:  2016-08-22       Impact factor: 5.157

4.  Inhibition of PKC-dependent extracellular Ca2+ entry contributes to the depression of contractile activity in long-term pressure-overloaded endothelium-denuded rat aortas.

Authors:  J Padilla; R M López; P López; M C Castillo; E Querejeta; A Ruiz; E F Castillo
Journal:  Braz J Med Biol Res       Date:  2014-08-01       Impact factor: 2.590

5.  Dysregulation of microRNAs and renin-angiotensin system in high salt diet-induced cardiac dysfunction in uninephrectomized rats.

Authors:  Venkateswara Rao Amara; Sunil Kumar Surapaneni; Kulbhushan Tikoo
Journal:  PLoS One       Date:  2017-07-20       Impact factor: 3.240

Review 6.  An Insight into GPCR and G-Proteins as Cancer Drivers.

Authors:  Preeti Kumari Chaudhary; Soochong Kim
Journal:  Cells       Date:  2021-11-24       Impact factor: 6.600

  6 in total

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