The physiological anti-hypertensive peptide catestatin and its common human variant Gly364Ser: differential cardiovascular effects in a rat model of hypertension.

IF 3.8 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY
Jitesh Singh Rathee, Dhanya R Iyer, Malapaka Kiranmayi, Samarasimha Reddy, V V Sureshbabu, Nitish R Mahapatra
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引用次数: 0

Abstract

Catestatin (CST), a 21-amino acids physiological peptide, has emerged as a key modulator of cardiovascular functions due to its anti-hypertensive and cardioprotective properties. However, the ramifications of the most common human variant of CST (viz., Gly364Ser) on cardiovascular pathophysiology remain partially understood. In this study, hypertension was induced in uninephrectomized rats by treatment with deoxycorticosterone-acetate and sodium chloride (DOCA-salt). The DOCA-salt-induced hypertensive (DSHR) animals were then intraperitoneally administered with either CST wild-type (CST-WT) or 364Ser variant (CST-Ser) peptide. CST-Ser was profoundly less effective than CST-WT in rescuing the elevated systolic blood pressure [from ∼211 mmHg to ∼176 mmHg, p < 0.0001 (CST-Ser) versus ∼116 mmHg, p < 0.0001 (CST-WT)] and heart rate [from ∼356 bpm to ∼314 bpm, p = 0.66 (CST-Ser) versus ∼276 bpm, p = 0.02 (CST-WT)]. CST-Ser also showed diminished effects in lowering diastolic blood pressure and mean arterial pressure in the DSHR animals. Furthermore, CST-Ser was inefficient/markedly less potent in rescuing the impaired contractile and diastolic function in DSHR animals [improvements in the contractility index by ∼22 s-1 (CST-Ser), p = 0.15 versus by ∼84 s-1 (CST-WT), p < 0.0001 and decrease in end-diastolic pressure by ∼4 mmHg (CST-Ser), p = 0.015 versus by ∼14 mmHg (CST-WT), p < 0.0001]. Moreover, CST-Ser exerted less potent anti-inflammatory effects on the DSHR hearts than CST-WT. These findings are in concordance with the elevated systolic/diastolic blood pressure observed in Ser variant carriers from various human populations. This study provides compelling evidence for the diminished anti-hypertensive and cardioprotective effects of the CST-Gly364Ser variant.

生理性抗高血压肽 catestatin 及其常见人类变体 Gly364Ser:在高血压大鼠模型中的不同心血管效应。
Catestatin(CST)是一种 21 个氨基酸的生理肽,因其具有抗高血压和保护心脏的特性,已成为心血管功能的关键调节剂。然而,人们对 CST 最常见的人类变体(即 Gly364Ser)对心血管病理生理学的影响仍然知之甚少。在这项研究中,用醋酸去氧皮质酮和氯化钠(DOCA-盐)诱导未切除肾脏的大鼠患高血压。然后给 DOCA 盐诱导的高血压(DSHR)动物腹腔注射 CST 野生型(CST-WT)或 364Ser 变异肽(CST-Ser)。在挽救升高的收缩压方面,CST-Ser 的效果远不如 CST-WT [从 ~211 mmHg 降至 ~176 mmHg,p
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来源期刊
Bioscience Reports
Bioscience Reports 生物-细胞生物学
CiteScore
8.50
自引率
0.00%
发文量
380
审稿时长
6-12 weeks
期刊介绍: Bioscience Reports provides a home for sound scientific research in all areas of cell biology and molecular life sciences. Since 2012, Bioscience Reports has been fully Open Access and publishes all papers under the liberal CC BY licence, giving the life science community quality research to share and discuss.Content before 2012 is subscription-only, and is accessible via archive purchase. Articles are assessed on soundness, providing a home for valid findings and data. We welcome papers that span disciplines (e.g. chemistry, medicine), including papers describing: -new methodologies -tools and reagents to probe biological questions -mechanistic details -disease mechanisms -metabolic processes and their regulation -structure and function -bioenergetics
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