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Interaction between LIS1 and PDE4, and its role in cytoplasmic dynein function

机译:LIS1和PDE4之间的相互作用及其在细胞质动力蛋白功能中的作用

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摘要

LIS1, a WD40 repeat scaffold protein, interacts with components of the cytoplasmic dynein motor complex to regulate dynein-dependent cell motility. Here, we reveal that cAMP-specific phosphodiesterases (PDE4s) directly bind PAFAH1B1 (also known as LIS1). Dissociation of LIS1–dynein complexes is coupled with loss of dynein function, as determined in assays of both microtubule transport and directed cell migration in wounded monolayers. Such loss in dynein functioning can be achieved by upregulation of PDE4, which sequesters LIS1 away from dynein, thereby uncovering PDE4 as a regulator of dynein functioning. This process is facilitated by increased intracellular cAMP levels, which selectively augment the interaction of long PDE4 isoforms with LIS1 when they become phosphorylated within their regulatory UCR1 domain by protein kinase A (PKA). We propose that PDE4 and dynein have overlapping interaction sites for LIS1, which allows PDE4 to compete with dynein for LIS1 association in a process enhanced by the PKA phosphorylation of PDE4 long isoforms. This provides a further example to the growing notion that PDE4 itself may provide a signalling role independent of its catalytic activity, exemplified here by its modulation of dynein motor function.
机译:LIS1,WD40重复支架蛋白,与细胞质动力蛋白复合物的成分相互作用,以调节动力蛋白依赖性的动力。在这里,我们揭示了cAMP特异性磷酸二酯酶(PDE4s)直接结合PAFAH1B1(也称为LIS1)。 LIS1-Dynein复合物的解离与Dynein功能的丧失相关,如微管转运和定向细胞在受伤的单层细胞中的迁移测定中所确定的。动力蛋白的这种丧失可以通过上调PDE4来实现,PDE4的上调将LIS1与动力蛋白隔离,从而揭示PDE4作为动力蛋白的调节剂。增加的细胞内cAMP水平促进了这一过程,当它们在其调控UCR1域中被蛋白激酶A(PKA)磷酸化时,长PDE4同工型与LIS1选择性地增强了相互作用。我们提出,PDE4和达因素对于LIS1具有重叠的相互作用位点,这使PDE4与达因素竞争LIS1缔合,这是通过PDE4长同工型的PKA磷酸化而增强的。这为日益增长的观念提供了一个进一步的例子,即PDE4本身可提供独立于其催化活性的信号传导作用,此处以其对动力蛋白运动功能的调节为例。

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