首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Acetylcholine Receptor (AChR) Clustering Is Regulated Both by Glycogen Synthase Kinase 3β (GSK3β)-dependent Phosphorylation and the Level of CLIP-associated Protein 2 (CLASP2) Mediating the Capture of Microtubule Plus-ends
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Acetylcholine Receptor (AChR) Clustering Is Regulated Both by Glycogen Synthase Kinase 3β (GSK3β)-dependent Phosphorylation and the Level of CLIP-associated Protein 2 (CLASP2) Mediating the Capture of Microtubule Plus-ends

机译:糖原合酶激酶3β(GSK3β)依赖的磷酸化和CLIP相关蛋白2(CLASP2)的水平调节乙酰胆碱受体(AChR)群集介导微管Plus-ends的捕获。

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摘要

The postsynaptic apparatus of the neuromuscular junction (NMJ) traps and anchors acetylcholine receptors (AChRs) at high density at the synapse. We have previously shown that microtubule (MT) capture by CLASP2, a MT plus-end-tracking protein (+TIP), increases the size and receptor density of AChR clusters at the NMJ through the delivery of AChRs and that this is regulated by a pathway involving neuronal agrin and several postsynaptic kinases, including GSK3. Phosphorylation by GSK3 has been shown to cause CLASP2 dissociation from MT ends, and nine potential phosphorylation sites for GSK3 have been mapped on CLASP2. How CLASP2 phosphorylation regulates MT capture at the NMJ and how this controls the size of AChR clusters are not yet understood. To examine this, we used myotubes cultured on agrin patches that induce AChR clustering in a two-dimensional manner. We show that expression of a CLASP2 mutant, in which the nine GSK3 target serines are mutated to alanine (CLASP2–9XS/9XA) and are resistant to GSK3β-dependent phosphorylation, promotes MT capture at clusters and increases AChR cluster size, compared with myotubes that express similar levels of wild type CLASP2 or that are noninfected. Conversely, myotubes expressing a phosphomimetic form of CLASP2 (CLASP2–8XS/D) show enrichment of immobile mutant CLASP2 in clusters, but MT capture and AChR cluster size are reduced. Taken together, our data suggest that both GSK3β-dependent phosphorylation and the level of CLASP2 play a role in the maintenance of AChR cluster size through the regulated capture and release of MT plus-ends.
机译:突触后神经肌肉接头(NMJ)的设备会在突触处高密度捕获并锚定乙酰胆碱受体(AChR)。先前我们已经表明,通过CLASP2(MT末端跟踪蛋白(+ TIP))捕获微管(MT),可通过递送AChR来增加NMJ上AChR簇的大小和受体密度,并且受AChR调节途径涉及神经元凝集素和几种突触后激酶,包括GSK3。 GSK3的磷酸化已显示可导致CLASP2从MT末端解离,并且GSK3的9个潜在的磷酸化位点已在CLASP2上定位。尚不清楚CLASP2磷酸化如何调节NMJ处的MT捕获,以及如何控制AChR簇的大小。为了检验这一点,我们使用了在凝集素斑块上培养的肌管,以二维方式诱导AChR聚集。我们显示了一个CLASP2突变体的表达,其中9个GSK3目标丝氨酸突变为丙氨酸(CLASP2–9XS / 9XA),并且对GSK3β依赖性磷酸化具有抗性,与肌管相比,可促进簇的MT捕获并增加AChR簇的大小。表达相似水平的野生型CLASP2或未感染。相反,表达拟磷酸化形式的CLASP2(CLASP2-8XS / D)的肌管显示簇中固定突变CLASP2的富集,但MT捕获和AChR簇的大小减少。两者合计,我们的数据表明GSK3β依赖的磷酸化和CLASP2的水平在MT末端的受控捕获和释放中,在维持AChR簇大小中起作用。

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