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首页> 外文期刊>Biochimica et Biophysica Acta. Molecular and cell biology of Lipids >Brain Specific Kinase-1 BRSK1/SAD-B associates with lipid rafts: modulation of kinase activity by lipid environment.
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Brain Specific Kinase-1 BRSK1/SAD-B associates with lipid rafts: modulation of kinase activity by lipid environment.

机译:脑特异性激酶1 BRSK1 / SAD-B与脂质筏相关:脂质环境调节激酶活性。

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Brain specific kinases 1 and 2 (BRSK1/2, also named SAD kinases) are serine-threonine kinases specifically expressed in the brain, and activated by LKB1-mediated phosphorylation of a threonine residue at their T-loop (Thr189/174 in human BRSK1/2). BRSKs are crucial for establishing neuronal polarity, and BRSK1 has also been shown to regulate neurotransmitter release presynaptically. How BRSK1 exerts this latter function is unknown, since its substrates at the synaptic terminal and the mechanisms modulating its activity remain to be described. Key regulators of neurotransmitter release, such as SNARE complex proteins, are located at membrane rafts. Therefore we initially undertook this work to check whether BRSK1 also locates at these membrane microdomains. Here we show that brain BRSK1, but not BRSK2, is palmitoylated, and provide biochemical and pharmacological evidences demonstrating that a pool of BRSK1, but not BRSK2 or LKB1, localizes at membrane lipid rafts. We also show that raft-associated BRSK1 has higher activity than BRSK1 from non-raft environment, based on a higher T-loop phosphorylation at Thr-189. Further, recombinant BRSK1 activity increased 3-fold when assayed with small multilamellar vesicles (SMV) generated with lipids extracted from synaptosomal raft fractions. A similar BRSK1-activating effect was obtained with synthetic SMV made with phosphatidylcholine, cholesterol and sphingomyelin, mixed in the same molar ratio at which these three major lipids are present in rafts. Importantly, SMV also enhanced the activity of a constitutively active BRSK1 (T189E), underpinning that interaction with lipid rafts represents a new mechanism of BRSK1 activity modulation, additional to T-loop phosphorylation.
机译:脑特异性激酶1和2(BRSK1 / 2,也称为SAD激酶)是在大脑中特异性表达的丝氨酸-苏氨酸激酶,并通过LKB1介导的T环上苏氨酸残基的磷酸化(在人类BRSK1中为Thr189 / 174)激活。 / 2)。 BRSK对建立神经元极性至关重要,BRSK1也已被证明可以突触地调节神经递质的释放。 BRSK1如何发挥后一种功能是未知的,因为其在突触末端的底物和调节其活性的机制仍有待描述。神经递质释放的关键调节因子(如SNARE复合蛋白)位于膜筏上。因此,我们最初进行这项工作来检查BRSK1是否也位于这些膜微区。在这里,我们显示大脑BRSK1,而不是BRSK2,是棕榈酰化的,并提供了生化和药理学证据,证明BRSK1的池而不是BRSK2或LKB1位于膜脂筏。我们还显示,基于Thr-189处较高的T环磷酸化,与筏相关的BRSK1比非筏环境中的BRSK1具有更高的活性。此外,当用从突触小体筏级分提取的脂质生成的小多层囊泡(SMV)分析时,重组BRSK1活性增加了3倍。用磷脂酰胆碱,胆固醇和鞘磷脂制成的合成SMV,以相同的摩尔比与筏中这三种主要脂质的摩尔比混合,可获得类似的BRSK1活化作用。重要的是,SMV还增强了组成型活性BRSK1(T189E)的活性,证明与脂筏的相互作用代表了除T环磷酸化外BRSK1活性调节的新机制。

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