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MuSK Kinase Activity is Modulated By A Serine Phosphorylation Site in The Kinase Loop

机译:MuSK激酶活性是由激酶环中的丝氨酸磷酸化位点调节的。

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The neuromuscular junction (NMJ) forms when a motor neuron contacts a muscle fibre. A reciprocal exchange of signals initiates a cascade of signalling events that result in pre- and postsynaptic differentiation. At the centre of these signalling events stands muscle specific kinase (MuSK). MuSK activation, kinase activity and subsequent downstream signalling are crucial for NMJ formation as well as maintenance. Therefore MuSK kinase activity is tightly regulated to ensure proper NMJ development. We have identified a novel serine phosphorylation site at position 751 in MuSK that is increasingly phosphorylated upon agrin stimulation. S751 is also phosphorylated in muscle tissue and its phosphorylation depends on MuSK kinase activity. A phosphomimetic mutant of S751 increases MuSK kinase activity in response to non-saturating agrin concentrations . In addition, basal MuSK and AChR phosphorylation as well as AChR cluster size are increased. We believe that the phosphorylation of S751 provides a novel mechanism to relief the autoinhibition of the MuSK activation loop. Such a lower autoinhibition could foster or stabilize MuSK kinase activation, especially during stages when no or low level of agrin are present. Phosphorylation of S751 might therefore represent a novel mechanism to modulate MuSK kinase activity during prepatterning or NMJ maintenance.
机译:当运动神经元接触肌肉纤维时,会形成神经肌肉接头(NMJ)。信号的相互交换会引发一系列信号事件,从而导致突触前和突触后分化。这些信号事件的中心是肌肉特异性激酶(MuSK)。 MuSK激活,激酶活性和随后的下游信号传导对于NMJ的形成和维持至关重要。因此,严格控制MuSK激酶活性以确保适当的NMJ发育。我们已经在MuSK的751位处发现了一个新的丝氨酸磷酸化位点,该蛋白在凝集素刺激下逐渐被磷酸化。 S751在肌肉组织中也被磷酸化,其磷酸化取决于MuSK激酶的活性。 S751的拟磷酸盐突变体响应非饱和凝集素浓度而增加MuSK激酶活性。另外,基础MuSK和AChR磷酸化以及AChR簇的大小增加。我们认为,S751的磷酸化提供了一种新颖的机制来减轻MuSK激活环的自抑制。这种较低的自抑制作用可以促进或稳定MuSK激酶的活化,特别是在不存在凝集素或含量低的凝集素的阶段。因此,S751的磷酸化可能代表了一种在预构图或NMJ维持过程中调节MuSK激酶活性的新机制。

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