Peptides derived from high voltage-gated calcium channel β subunit reduce blood pressure in rats.

IF 1.6 4区 医学 Q3 PHARMACOLOGY & PHARMACY
Hyung Kyu Kim, Jiyeon Jun, Tae Wan Kim, Dong-Ho Youn
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Abstract

The β subunits of high voltage-gated calcium channels (HGCCs) are essential for optimal channel functions such as channel gating, activation-inactivation kinetics, and trafficking to the membrane. In this study, we report for the first time the potent blood pressure-reducing effects of peptide fragments derived from the β subunits in anesthetized and non-anesthetized rats. Intravenous administration of 16-mer peptide fragments derived from the interacting regions of the β1 [cacb1(344-359)], β2 [cacb2(392-407)], β3 [cacb3(292-307)], and β4 [cacb4(333-348)] subunits with the main α-subunit of HGCC decreased arterial blood pressure in a dose-dependent manner for 5-8 min in anesthetized rats. In contrast, the peptides had no effect on the peak amplitudes of voltage-activated Ca2+ current upon their intracellular application into the acutely isolated trigeminal ganglion neurons. Further, a single mutated peptide of cacb1(344-359)-cacb1(344-359)K357R-showed consistent and potent effects and was crippled by a two-amino acid-truncation at the N-terminal or C-terminal end. By conjugating palmitic acid with the second amino acid (lysine) of cacb1(344-359)K357R (named K2-palm), we extended the blood pressure reduction to several hours without losing potency. This prolonged effect on the arterial blood pressure was also observed in non-anesthetized rats. On the other hand, the intrathecal administration of acetylated and amidated cacb1(344-359)K357R peptide did not change acute nociceptive responses induced by the intradermal formalin injection in the plantar surface of rat hindpaw. Overall, these findings will be useful for developing antihypertensives.

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高压门控钙通道β亚基衍生的肽可降低大鼠血压。
高压门控钙通道(HGCCs)的β亚基对于优化通道功能(如通道门控、激活-失活动力学和转运到膜)至关重要。在这项研究中,我们首次报道了来自β亚基的肽片段在麻醉和非麻醉大鼠中的有效降血压作用。经静脉注射β1 [cacb1(344-359)]、β2 [cacb2(392-407)]、β3 [cacb3(292-307)]和β4 [cac4(333-348)]亚基与HGCC主要α-亚基相互作用区域衍生的16聚肽片段,可使麻醉大鼠动脉血压呈剂量依赖性降低5-8分钟。相反,肽在细胞内应用于急性分离的三叉神经节神经元时,对电压激活的Ca2+电流的峰值振幅没有影响。此外,cacb1(344-359)的单一突变肽-cacb1(344-359) k357r显示出一致和有效的作用,并在n端或c端被两个氨基酸截断。通过将棕榈酸与cacb1(344-359)K357R(命名为K2-palm)的第二氨基酸(赖氨酸)偶联,我们将血压降低时间延长至数小时而不失去药效。在未麻醉的大鼠中也观察到这种对动脉血压的长期影响。另一方面,鞘内给予乙酰化和修饰的cacb1(344-359)K357R肽,不改变皮内注射福尔马林在大鼠后爪足底表面诱导的急性伤害性反应。总的来说,这些发现将有助于开发抗高血压药物。
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来源期刊
Korean Journal of Physiology & Pharmacology
Korean Journal of Physiology & Pharmacology PHARMACOLOGY & PHARMACY-PHYSIOLOGY
CiteScore
3.20
自引率
5.00%
发文量
53
审稿时长
6-12 weeks
期刊介绍: The Korean Journal of Physiology & Pharmacology (Korean J. Physiol. Pharmacol., KJPP) is the official journal of both the Korean Physiological Society (KPS) and the Korean Society of Pharmacology (KSP). The journal launched in 1997 and is published bi-monthly in English. KJPP publishes original, peer-reviewed, scientific research-based articles that report successful advances in physiology and pharmacology. KJPP welcomes the submission of all original research articles in the field of physiology and pharmacology, especially the new and innovative findings. The scope of researches includes the action mechanism, pharmacological effect, utilization, and interaction of chemicals with biological system as well as the development of new drug targets. Theoretical articles that use computational models for further understanding of the physiological or pharmacological processes are also welcomed. Investigative translational research articles on human disease with an emphasis on physiology or pharmacology are also invited. KJPP does not publish work on the actions of crude biological extracts of either unknown chemical composition (e.g. unpurified and unvalidated) or unknown concentration. Reviews are normally commissioned, but consideration will be given to unsolicited contributions. All papers accepted for publication in KJPP will appear simultaneously in the printed Journal and online.
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