Pharmacological inhibition of CaMKK2 with the selective antagonist STO-609 regresses NAFLD.

Pharmacological inhibition of CaMKK2 with the selective antagonist STO-609 regresses NAFLD.
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DOI:
10.1038/s41598-017-12139-3
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发表时间:
2017-09-18
期刊:
影响因子:
4.6
通讯作者:
Means AR
Means AR
中科院分区:
综合性期刊3区
文献类型:
--
作者:
York B;Li F;Lin F;Marcelo KL;Mao J;Dean A;Gonzales N;Gooden D;Maity S;Coarfa C;Putluri N;Means AR

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钙离子与其细胞内受体钙调素(CaM)的结合激活了一个Ca 2 +/CaM依赖性蛋白激酶家族。CaMKK 2(Ca 2 +/CaM依赖性蛋白激酶激酶2)是该激酶家族的核心成员,因为它控制涉及CaMKI、CaMKIV或AMPK的CaMK级联的作用。CaMKK 2控制胰岛素信号传导、代谢稳态、炎症和癌细胞生长,突出了其作为多种疾病的治疗靶点的潜力。STO-609是CaMKK 2的选择性小分子抑制剂。尽管STO-609已在体外和细胞中广泛用于表征和定义CaMKK 2的新机制功能,但只有少数研究报道了STO-609的体内使用。我们合成了功能性STO-609,并通过体外(激酶测定)、离体(人肝微粒体)和体内(小鼠)模型系统评估其药理学特性。我们描述了STO-609的代谢过程,其毒性,药代动力学和生物利用度在各种小鼠组织。利用这些数据,我们表明STO-609治疗抑制CaMKK 2功能可保护非酒精性脂肪肝。这些数据通过建立使用STO-609抑制CaMKK 2的体内功能的标准提供了有价值的资源,并证明了其用于治疗代谢相关肝病的效用。
Binding of calcium to its intracellular receptor calmodulin (CaM) activates a family of Ca2+/CaM-dependent protein kinases. CaMKK2 (Ca2+/CaM-dependent protein kinase kinase 2) is a central member of this kinase family as it controls the actions of a CaMK cascade involving CaMKI, CaMKIV or AMPK. CaMKK2 controls insulin signaling, metabolic homeostasis, inflammation and cancer cell growth highlighting its potential as a therapeutic target for a variety of diseases. STO-609 is a selective, small molecule inhibitor of CaMKK2. Although STO-609 has been used extensively in vitro and in cells to characterize and define new mechanistic functions of CaMKK2, only a few studies have reported the in vivo use of STO-609. We synthesized functional STO-609 and assessed its pharmacological properties through in vitro (kinase assay), ex vivo (human liver microsomes) and in vivo (mouse) model systems. We describe the metabolic processing of STO-609, its toxicity, pharmacokinetics and bioavailability in a variety of mouse tissues. Utilizing these data, we show STO-609 treatment to inhibit CaMKK2 function confers protection against non-alcoholic fatty liver disease. These data provide a valuable resource by establishing criteria for use of STO-609 to inhibit the in vivo functions of CaMKK2 and demonstrate its utility for treating metabolically-related hepatic disease.
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