首页> 美国卫生研究院文献>The Journal of Neuroscience >Protein Interacting with C-Kinase 1/Protein Kinase Cα-Mediated Endocytosis Converts Netrin-1-Mediated Repulsion to Attraction
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Protein Interacting with C-Kinase 1/Protein Kinase Cα-Mediated Endocytosis Converts Netrin-1-Mediated Repulsion to Attraction

机译:与C激酶1 /蛋白激酶Cα介导的内吞作用相互作用的蛋白质将Netrin-1介导的排斥转化为吸引力。

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摘要

In vertebrates, the receptor families deleted in colorectal cancer (DCC) and UNC5 mediate responses to the bifunctional guidance cue netrin-1. DCC mediates attraction, whereas a complex of DCC and UNC5 mediates repulsion. Thus, a primary determinant of the responsiveness of an axon to netrin-1 is the presence or absence of UNC5 family members on the cell surface. Currently, little is known about the role of receptor trafficking in regulating neuronal responses to netrin-1. We show that protein interacting with C-kinase 1 (PICK1) recruits activated protein kinase Cα (PKCα) to MycUNC5A at the plasma membrane, stimulating its endocytosis. We identify two PKCα phosphorylation sites at serines 408 and 587, as well as dileucine internalization motifs, which are required for this endocytosis. We find that PKCα-stimulated internalization of UNC5A alters the functional response of developing hippocampal axons to netrin-1, preventing UNC5A-mediated growth cone collapse and converting netrin-1-stimulated chemorepulsion to attraction. To address whether this conversion in axonal response occurs in neurons expressing endogenous levels of UNC5, we show that mouse cerebellar granule axons exhibit chemorepulsion in a netrin-1 gradient and that this chemorepulsion is converted to chemoattraction after PKCα activation. We demonstrate that this repulsion depends on UNC5A because Unc5a−/− axons are not repelled and show this conversion depends on PICK1 because PICK1−/− axons are not converted to chemoattraction after PKCα activation. Together, these data provide a potential mechanism to explain how developing neurons alter their responsiveness to netrin-1 at intermediate choice points as they navigate to their targets.
机译:在脊椎动物中,在大肠癌(DCC)和UNC5中缺失的受体家族介导了对双功能指导cue netrin-1的反应。 DCC介导吸引力,而DCC和UNC5的复合体介导排斥。因此,轴突对netrin-1应答的主要决定因素是细胞表面是否存在UNC5家族成员。目前,关于受体转运在调节对netrin-1的神经元反应中的作用了解甚少。我们显示与C激酶1(PICK1)相互作用的蛋白质募集到活化的蛋白激酶Cα(PKCα)到MycUNC5A在质膜上,刺激其内吞作用。我们确定两个PKCα丝氨酸408和587磷酸化位点,以及双亮氨酸内在基序,这是内吞作用所必需的。我们发现,PKCα刺激的UNC5A内在化改变了海马轴突对netrin-1的功能响应,防止了UNC5A介导的生长锥塌陷和netrin-1刺激的化学搏动转化为吸引力。为了解决这种轴突反应转换是否在表达内源性UNC5的神经元中发生,我们显示了小鼠小脑颗粒轴突在netrin-1梯度中表现出化学趋化作用,并且该化学趋化作用在PKCα激活后转化为化学引诱作用。我们证明了这种排斥作用取决于UNC5A,因为Unc5a-/-轴突没有被排斥,并且表明这种转化取决于PICK1,因为在PKCα激活后PICK1-/-轴突没有转化成化学引力。总之,这些数据提供了一种潜在的机制来解释发育中的神经元如何在中间选择点导航至目标时改变其对netrin-1的响应。

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