Department of Signal Transduction Sciences, Faculty of Medicine, Kagawa University, 1750-1 Miki-cho, Kita-gun, Kagawa 761-0793, Japan.
BMC Biochem. 2012 Dec 5;13:27. doi: 10.1186/1471-2091-13-27.
Ca2+/calmodulin-dependent protein kinase kinase (CaMKK) phosphorylates and activates particular downstream protein kinases - including CaMKI, CaMKIV, and AMPK- to stimulate multiple Ca2+-signal transduction pathways. To identify previously unidentified CaMKK substrates, we used various nucleotides as phosphate donors to develop and characterize an in vitro phosphorylation assay for CaMKK.
Here, we found that the recombinant CaMKK isoforms were capable of utilizing Mg-GTP as a phosphate donor to phosphorylate the Thr residue in the activation-loop of CaMKIα (Thr177) and of AMPK (Thr172) in vitro. Kinetic analysis indicated that the Km values of CaMKK isoforms for GTP (400-500 μM) were significantly higher than those for ATP (~15 μM), and a 2- to 4-fold decrease in Vmax was observed with GTP. We also confirmed that an ATP competitive CaMKK inhibitor, STO-609, also competes with GTP to inhibit the activities of CaMKK isoforms. In addition, to detect enhanced CaMKI phosphorylation in brain extracts with Mg-GTP and recombinant CaMKKs, we found potential CaMKK substrates of ~45 kDa and ~35 kDa whose Ca2+/CaM-induced phosphorylation was inhibited by STO-609.
These results indicated that screens that use STO-609 as a CaMKK inhibitor and Mg-GTP as a CaMKK-dependent phosphate donor might be useful to identify previously unidentified downstream target substrates of CaMKK.
钙调素依赖性蛋白激酶激酶(CaMKK)磷酸化并激活特定的下游蛋白激酶 - 包括 CaMKI、CaMKIV 和 AMPK - 以刺激多种 Ca2+信号转导途径。为了鉴定以前未识别的 CaMKK 底物,我们使用各种核苷酸作为磷酸供体来开发和表征用于 CaMKK 的体外磷酸化测定法。
在这里,我们发现重组 CaMKK 同工型能够利用 Mg-GTP 作为磷酸供体在体外磷酸化 CaMKIα(Thr177)和 AMPK(Thr172)的激活环中的 Thr 残基。动力学分析表明,CaMKK 同工型对 GTP(400-500 μM)的 Km 值明显高于对 ATP(~15 μM)的 Km 值,并且观察到 Vmax 下降 2-4 倍用 GTP。我们还证实,一种 ATP 竞争性 CaMKK 抑制剂 STO-609 也与 GTP 竞争以抑制 CaMKK 同工型的活性。此外,为了在用 Mg-GTP 和重组 CaMKKs 检测脑提取物中增强的 CaMKI 磷酸化,我们发现了约 45 kDa 和 35 kDa 的潜在 CaMKK 底物,其 Ca2+/CaM 诱导的磷酸化被 STO-609 抑制。
这些结果表明,使用 STO-609 作为 CaMKK 抑制剂和 Mg-GTP 作为 CaMKK 依赖性磷酸供体的筛选可能有助于鉴定以前未识别的 CaMKK 下游靶标底物。