Department of Medicine (Cardiology) and Physiology and Biophysics, University of Maryland-Baltimore, Baltimore, MD, 21201, USA.
Department of Physiology , University of Maryland- Baltimore , MD, 21201, Baltimore, USA.
Pflugers Arch. 2021 Apr;473(4):611-622. doi: 10.1007/s00424-020-02488-w. Epub 2020 Nov 4.
Alternative splicing of exon 24 (E24) of the myosin phosphatase regulatory subunit (Mypt1) tunes smooth muscle sensitivity to NO/cGMP-mediated vasorelaxation and thereby controls blood pressure (BP) in otherwise normal mice. This occurs via the toggling in or out of a C-terminal leucine zipper (LZ) motif required for hetero-dimerization with and activation by cGMP-dependent protein kinase cGK1α. Here we tested the hypothesis that editing (deletion) of E24, by shifting to the LZ positive isoform of Mypt1, would suppress the hypertensive response to angiotensin II (AngII). To test this, mice underwent tamoxifen-inducible and smooth muscle-specific deletion of E24 (E24 cKO) at age 6 weeks followed by a chronic slow-pressor dose of AngII (400 ng/kg/min) plus additional stressors. E24 cKO suppressed the hypertensive response to AngII alone or with the addition of a high salt diet. This effect was not a function of altered salt balance as there were no differences in intake or renal excretion of sodium. This effect was NO dependent as L-NAME in the drinking water caused an exaggerated hypertensive response in the E24cKO mice. E24cKO mouse mesenteric arteries were more sensitive to DEA/NO-induced vasorelaxation and less responsive to AngII- and α-adrenergic-induced vasoconstriction at baseline. Only the latter two effects were still present after 2 weeks of chronic AngII treatment. We conclude that editing of Mypt1 E24, by shifting the expression of naturally occurring isoforms and sensitizing to NO-mediated vasodilation, could be a novel approach to the treatment of human hypertension.
肌球蛋白磷酸酶调节亚基(Mypt1)外显子 24(E24)的可变剪接调节平滑肌对 NO/cGMP 介导的血管舒张的敏感性,从而控制正常小鼠的血压(BP)。这是通过 toggling 入或出一个 C 端亮氨酸拉链(LZ)基序来实现的,该基序对于与 cGMP 依赖性蛋白激酶 cGK1α 异二聚化和激活是必需的。在这里,我们测试了这样一个假设,即通过 E24 的编辑(缺失),即转向 Mypt1 的 LZ 阳性同工型,会抑制血管紧张素 II(AngII)引起的高血压反应。为了验证这一点,我们在 6 周龄时对小鼠进行了他莫昔芬诱导的和平滑肌特异性的 E24 缺失(E24 cKO),然后给予慢性低压器 AngII(400ng/kg/min)加额外的应激。E24 cKO 抑制了 AngII 单独或与高盐饮食联合引起的高血压反应。这种效应不是盐平衡改变的功能,因为钠的摄入或肾排泄没有差异。这种效应是依赖于 NO 的,因为饮用水中的 L-NAME 导致 E24cKO 小鼠的高血压反应加剧。E24cKO 小鼠肠系膜动脉对 DEA/NO 诱导的血管舒张更敏感,对 AngII 和 α-肾上腺素能诱导的血管收缩的反应性降低。只有后两种效应在 2 周慢性 AngII 治疗后仍然存在。我们得出结论,Mypt1 E24 的编辑通过改变天然存在的同工型的表达并使平滑肌对 NO 介导的血管舒张敏感,可以成为治疗人类高血压的一种新方法。