Okada Miki, Takezawa Daisuke, Tachibanaki Shuji, Kawamura Satoru, Tokumitsu Hiroshi, Kobayashi Ryoji
Department of Signal Transduction Sciences, Kagawa Medical University, 1750-1 Ikenobe, Miki-cho, Kita-gun, Kagawa 761-0793, Japan.
Biochem J. 2003 Oct 1;375(Pt 1):87-97. doi: 10.1042/BJ20030376.
The NCS (neuronal calcium sensor) proteins, including neurocalcins, recoverins and visinin-like proteins are members of a family of Ca2+-sensitive regulators, each with three Ca2+-binding EF-hand motifs. In plants, lily CCaMK [chimaeric Ca2+/CaM (calmodulin)-dependent protein kinase] and its PpCaMK ( Physcomitrella patens CCaMK) homologue are characterized by a visinin-like domain with three EF-hands. In the present study, in an effort to discover NCS antagonists, we screened a total of 43 compounds using Ca2+-dependent drug affinity chromatography and found that the insulinotropic agent repaglinide targets the NCS protein family. Repaglinide was found to bind to NCS proteins, but not to CaM or S100 proteins, in a Ca2+-dependent manner. Furthermore, the drug antagonized the inhibitory action of recoverin in a rhodopsin kinase assay with IC50 values of 400 microM. Moreover, repaglinide tightly bound to the visinin-like domain of CCaMK and PpCaMK in a Ca2+-dependent manner and antagonized the regulatory function of the domain with IC50 values of 55 and 4 microM for CCaMK and PpCaMK respectively. Although both repaglinide and a potent insulin secretagogue, namely glibenclamide, blocked K(ATP) channels with similar potency, glibenclamide had no antagonizing effect on the Ca2+-stimulated CCaMK and PpCaMK autophosphorylation, mediated by their visinin-like domain. In addition, a typical CaM antagonist, trifluoperazine, had no effect on the CCaMK and PpCaMK autophosphorylation. Repaglinide appears to be the first antagonist of NCS proteins and visinin-like domain-bearing enzymes. It may serve as a useful tool for evaluating the physiological functions of the NCS protein family. In addition, since repaglinide selectively targets NCS proteins among the EF-hand Ca2+-binding proteins, it is a potential lead compound for the development of more potent NCS antagonists.
神经元钙传感器(NCS)蛋白,包括神经钙蛋白、恢复蛋白和类视锥蛋白,是一类Ca2+敏感调节蛋白家族的成员,每个成员都有三个Ca2+结合EF手基序。在植物中,百合CCaMK [嵌合Ca2+/钙调蛋白(CaM)依赖性蛋白激酶]及其小立碗藓CCaMK(PpCaMK)同源物的特征是具有一个含三个EF手的类视锥蛋白结构域。在本研究中,为了寻找NCS拮抗剂,我们使用Ca2+依赖性药物亲和色谱法总共筛选了43种化合物,发现促胰岛素分泌剂瑞格列奈靶向NCS蛋白家族。研究发现,瑞格列奈以Ca2+依赖性方式与NCS蛋白结合,但不与CaM或S100蛋白结合。此外,在视紫红质激酶试验中,该药物拮抗恢复蛋白的抑制作用,IC50值为400μM。此外,瑞格列奈以Ca2+依赖性方式紧密结合CCaMK和PpCaMK的类视锥蛋白结构域,并拮抗该结构域的调节功能,对CCaMK和PpCaMK的IC50值分别为55μM和4μM。尽管瑞格列奈和一种强效胰岛素促分泌剂格列本脲阻断K(ATP)通道的效力相似,但格列本脲对由其类视锥蛋白结构域介导的Ca2+刺激的CCaMK和PpCaMK自身磷酸化没有拮抗作用。此外,一种典型的CaM拮抗剂三氟拉嗪对CCaMK和PpCaMK自身磷酸化也没有影响。瑞格列奈似乎是首个NCS蛋白和含类视锥蛋白结构域酶的拮抗剂。它可能是评估NCS蛋白家族生理功能的有用工具。此外,由于瑞格列奈在EF手Ca2+结合蛋白中选择性靶向NCS蛋白,它是开发更有效NCS拮抗剂的潜在先导化合物。