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hSK4/hIK1,一种人T淋巴细胞中与钙调蛋白结合的钾钙通道。在增殖和体积调节中的作用。

hSK4/hIK1, a calmodulin-binding KCa channel in human T lymphocytes. Roles in proliferation and volume regulation.

作者信息

Khanna R, Chang M C, Joiner W J, Kaczmarek L K, Schlichter L C

机构信息

Playfair Neuroscience Unit, Toronto Western Hospital, University Health Network, Toronto, Ontario M5T 2S8, Canada.

出版信息

J Biol Chem. 1999 May 21;274(21):14838-49. doi: 10.1074/jbc.274.21.14838.

Abstract

Human T lymphocytes express a Ca2+-activated K+ current (IK), whose roles and regulation are poorly understood. We amplified hSK4 cDNA from human T lymphoblasts, and we showed that its biophysical and pharmacological properties when stably expressed in Chinese hamster ovary cells were essentially identical to the native IK current. In activated lymphoblasts, hSK4 mRNA increased 14.6-fold (Kv1.3 mRNA increased 1.3-fold), with functional consequences. Proliferation was inhibited when Kv1.3 and IK were blocked in naive T cells, but IK block alone inhibited re-stimulated lymphoblasts. IK and Kv1.3 were involved in volume regulation, but IK was more important, particularly in lymphoblasts. hSK4 lacks known Ca2+-binding sites; however, we mapped a Ca2+-dependent calmodulin (CaM)-binding site to the proximal C terminus (Ct1) of hSK4. Full-length hSK4 produced a highly negative membrane potential (Vm) in Chinese hamster ovary cells, whereas the channels did not function when either Ct1 or the distal C terminus was deleted (Vm approximately 0 mV). Native IK (but not expressed hSK4) current was inhibited by CaM and CaM kinase antagonists at physiological Vm values, suggesting modulation by an accessory molecule in native cells. Our results provide evidence for increased roles for IK/hSK4 in activated T cell functions; thus hSK4 may be a promising therapeutic target for disorders involving the secondary immune response.

摘要

人类T淋巴细胞表达一种钙激活钾电流(IK),但其作用和调节机制尚不清楚。我们从人类T淋巴母细胞中扩增出hSK4 cDNA,并表明其在中国仓鼠卵巢细胞中稳定表达时的生物物理和药理学特性与天然IK电流基本相同。在活化的淋巴母细胞中,hSK4 mRNA增加了14.6倍(Kv1.3 mRNA增加了1.3倍),并产生了功能后果。在未活化的T细胞中,当Kv1.3和IK被阻断时增殖受到抑制,但单独阻断IK则抑制再刺激的淋巴母细胞。IK和Kv1.3参与体积调节,但IK更重要,尤其是在淋巴母细胞中。hSK4缺乏已知的钙结合位点;然而,我们将一个钙依赖性钙调蛋白(CaM)结合位点定位到hSK4的近端C末端(Ct1)。全长hSK4在中国仓鼠卵巢细胞中产生高度负的膜电位(Vm),而当Ct1或远端C末端缺失时通道则不起作用(Vm约为0 mV)。在生理Vm值下,天然IK(而非表达的hSK4)电流受到CaM和CaM激酶拮抗剂的抑制,这表明在天然细胞中存在辅助分子的调节作用。我们的结果为IK/hSK4在活化T细胞功能中的作用增强提供了证据;因此,hSK4可能是涉及二次免疫反应疾病的一个有前景的治疗靶点。

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