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DESCRIPTION (provided by applicant): Voltage-gated K+ (Kv) currents in native vascular smooth muscle cells (VSMC) are inhibited by an increase in cytosolic free Ca2+, secondary to intracellular Ca 2+ release or extracellular Ca2+ influx. This inhibitory effect is enhanced in VSMCs from resistance versus conduit arteries and from hypertensive compared to normotensive rats. Thus, Ca2+-mediated inhibition of Kv currents may contribute to the regulation of tone in small arteries and to the pathogenesis of hypertensive disease. In our previous studies to identify the molecular mechanisms responsible for this effect, we found that 1) Kv1.2 and Kv1.5 are the dominant Shaker channels in rat small mesenteric arteries (SMA) and expression of these proteins is higher in hypertensive arteries; 2) intracellular Ca2+ inhibits Kv1.2, Kv1.5 and Kv1.2-1.5 heteromeric channels expressed in Xenopus laevis oocytes and in CHO cells; 3) this Ca2+ inhibition is enhanced by added calmodulin (CaM) but is not affected by staruosporine, an inhibitor of protein kinases A, G and C; and 4) more than one mechanism may be involved in Ca2+-mediated Kv inhibition. Our data also suggest that Kv1.2 and Kv1.5 are coassembled in a heterotetramic structure to form functional Kv1.2-1.5 channels, and that the properties of Kv1.2 and Kv1.5 alone are not sufficient to represent those of Kv currents in rat SMA VSMCs. Based on these findings, this renewal application will test the hypotheses that 1) multiple Kv channel assemblies (alpha and beta subunits) contribute to Kv current and to contractile function in SMA; 2) only Shaker Kv1 channels are inhibited by Ca2+; 3) Ca2+ inhibition of Kv channels is mediated by multiple mechanisms involving CaM; and 4) these processes are enhanced in VSMC from hypertensive animals. These hypotheses will be tested using SMA from normal (WKY) and hypertensive (SHR) animals. We suggest that this process couples changes in intracellular Ca2+ to changes in membrane potential and voltage-gated Ca2+ channel activity thereby contributing to the regulation of arterial force maintenance and vascular resistance. The differential "expression" of this effect in VSMCs from SHR versus WKY will aid in confirming candidate mechanisms. These studies will define a novel therapeutic target for antihypertensive drug development based upon the mechanism(s) of Ca2+-Kv channel modulation.
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Ramipril treatment alters Ca(2+) and K(+) channels in small mesenteric arteries from Wistar-Kyoto and spontaneously hypertensive rats.
雷米普利治疗改变 Wistar-Kyoto 大鼠和自发性高血压大鼠肠系膜小动脉中的 Ca(2) 和 K() 通道。
DOI: --
发表时间: 2002
期刊: American journal of hypertension
影响因子: 3.2
作者: [Cox,RobertH, Lozinskaya,Irina, Matsuda,Kyoko, Dietz,NancyJ]
通讯作者: Dietz,NancyJ
GTP requirement for isoproterenol activation of calcium channels in vascular myocytes.
GTP 需要异丙肾上腺素激活血管肌细胞中的钙通道。
DOI: 10.1152/ajpheart.1995.269.1.h195
发表时间: 1995
期刊: The American journal of physiology.
影响因子: --
作者: [Shi,QY, Cox,RH]
通讯作者: Cox,RH
Alterations in membrane caveolae and BKCa channel activity in skin fibroblasts in Smith-Lemli-Opitz syndrome.
Smith-Lemli-Opitz 综合征皮肤成纤维细胞膜小窝和 BKCa 通道活性的改变。
DOI: 10.1016/j.ymgme.2011.04.019
发表时间: 2011
期刊: Molecular genetics and metabolism
影响因子: 3.8
作者: [Ren,Gongyi, Jacob,RobertF, Kaulin,Yuri, Dimuzio,Paul, Xie,Yi, Mason,RPreston, Tint,GStephen, Steiner,RobertD, Roullet,Jean-Baptiste, Merkens,Louise, Whitaker-Menezes,Diana, Frank,PhilippeG, Lisanti,MichaelP, Cox,RobertH, Tulenko,Thom]
通讯作者: Tulenko,Thom
Effects of putative K+ channel activator BRL-34915 on arterial contraction and 86Rb efflux.
假定的 K 通道激活剂 BRL-34915 对动脉收缩和 86Rb 流出的影响。
DOI: --
发表时间: 1990
期刊: The Journal of pharmacology and experimental therapeutics
影响因子: --
作者: [Cox,RH]
通讯作者: Cox,RH
24
    SMALL INSTRUMENTATION GRANT
    SMALL INSTRUMENTATION GRANT
    HYPERTENSION--CONTRIBUTION OF ARTERIAL WALL CHANGES
    • 批准号:
      2898402
    • 项目类别:
    • 资助金额:
      $31.71万
    • 财政年份:
      1992
    • 负责人:
      ROBERT H COX
    • 依托单位:
    HYPERTENSION: CONTRIBUTION OF ARTERIAL WALL CHANGES
    海外基金