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Structural Identification and Systematic Comparison of Phorbol Ester, Dioleoylglycerol, Alcohol and Sevoflurane Binding Sites in PKCδ C1A Domain

机译:PKCδC1A结构域氏岩酯,Dioleoylglycerol,醇和七氟脲结合位点的结构鉴定和系统比较

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摘要

Protein kinase C (PKC) is a family of signal transducing enzymes that have been implicated in anesthetic preconditioning signaling cascade. Evidences are emerging that certain exogenous neuromodulators such as n -alkanols and general anesthetics can stimulate PKC activity by binding to regulatory C1A domain of the enzyme. However, the accurate binding sites in C1A domain as well as the molecular mechanism underlying binding-stimulated PKC activation still remain unelucidated. Here, we report a systematic investigation of the intermolecular interaction of human PKCδ C1A domain with its natural activator phorbol ester (PE) and co-activator dioleoylglycerol (DOG) as well as exogenous stimulators butanol, octanol and sevoflurane. The domain is computationally identified to potentially have three spatially vicinal ligand-binding pockets 1, 2 and 3, in which the pockets 1 and 2 have previously been determined as the binding sites of PE and DOG, respectively. Systematic cross-binding analysis reveals that long-chain octanol and DOG are well compatible with the flat, nonpolar pocket 2, where the nonspecific hydrophobic contacts and van der Waals packing are primarily responsible for the binding, while the general anesthetic sevoflurane prefer to interact with the rugged, polar pocket 3 through specific hydrogen bonds and electrostatic forces. Short-chain butanol appears to bind effectively none of the three pockets. In addition, the pocket 1 consists of two angled arms 1 and 2 that are also involved in pockets 2 and 3, respectively. Dynamics characterization imparts that binding of long-chain octanol and DOG to pocket 2 or binding of sevoflurane to pocket 3 can induce a conformational displacement in arm 1 or 2, thus further opening the included angle and enlarging pocket 1, which can improve the pocket 1-PE affinity via an allosteric mechanism, consequently stimulating the PE-induced PKCδ activation.
机译:蛋白激酶C(PKC)是一种信号转导酶的系列,其已经涉及在麻醉剂预处理信号级级级级。显着的是,某些外源性神经调节剂如N-alkanols和全身麻醉剂可以通过与酶的调节C1A结构域结合来刺激PKC活性。然而,C1A结构域中的精确结合位点以及潜在的结合刺激的PKC活化的分子机制仍然是不酸的。在这里,我们报告了对人PKCδC1A结构域与其天然活化剂磷酸酯(PE)和共激活剂Dioleoylgycerol(狗)的分子间相互作用的系统研究以及外源刺激蛋白丁醇,辛醇和七氟醚。该域被计算地识别为潜在地具有三个空间邻近配体粘合袋1,2和3,其中袋1和2先前已经被确定为PE和狗的结合位点。系统交叉结合分析表明,长链辛醇和狗与平坦的非极性袋2相容,其中非特异性疏水触点和范德瓦尔斯包装主要负责绑定,而大量麻醉七氟醚喜欢与之相互作用粗糙的极性袋3通过特定的氢键和静电力。短链丁醇似乎有效地绑定了三个口袋。另外,口袋1分别由两个成角度的臂1和2组成,它们也分别参与袋2和3。动态表征赋予长链辛醇和狗的袋2或七氟醚与袋3的结合的结合可以诱导臂1或2中的构象位移,从而进一步打开包括的角度和增大口袋1,其可以改善口袋1 -Pe通过变形机制的亲和力,因此刺激PE诱导的PKCδ活化。

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