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The adaptor protein melanophilin regulates dynamic myosin-Va:cargo interaction and dendrite development in melanocytes

机译:适配器蛋白质Melanophilin调节动态肌球蛋白 - VA:Melanocytes的货物相互作用和枝晶发育

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The regulation of organelle transport by the cytoskeleton is fundamental for eukaryotic survival. Cytoskeleton motors are typically modular proteins with conserved motor and diverse cargo-binding domains. Motor: cargo interactions are often indirect and mediated by adaptor proteins, for example, Rab GTPases. Rab27a, via effector melanophilin (Mlph), recruits myosin-Va (MyoVa) to melanosomes and thereby disperses them into melanocyte dendrites. To better understand how adaptors regulate motor: cargo interaction, we used single melanosome fluorescence recovery after photobleaching (smFRAP) to characterize the association kinetics among MyoVa, its adaptors, and melanosomes. We found that MyoVa and Mlph rapidly recovered after smFRAP, whereas Rab27a did not, indicating that MyoVa and Mlph dynamically associate with melanosomes and Rab27a does not. This suggests that dynamic Rab27a:effector interaction rather than Rab27a melanosome: cytosol cycling regulates MyoVa:melanosome association. Accordingly, a Mlph-Rab27a fusion protein reduced MyoVa smFRAP, indicating that it stabilized melanosomal MyoVa. Finally, we tested the functional importance of dynamic MyoVa: melanosome interaction. We found that whereas a MyoVa-Rab27a fusion protein dispersed melanosomes in MyoVa-deficient cells, dendrites were significantly less elongated than in wild-type cells. Given that dendrites are the prime sites of melanosome transfer from melanocytes to keratinocytes, we suggest that dynamic MyoVa: melanosome interaction is important for pigmentation in vivo.
机译:细胞内骨骼的调节是真核生存期的基础。细胞骨架电动机通常是具有保守电动机和多样性货物结合结构域的模块化蛋白质。电动机:货物相互作用通常是间接的,由衔接蛋白(例如Rab GTP酶)间接介导。 Rab27a,Via exfector melanophilin(MLPH),促进myosin-Va(Myova)到黑素体,从而将它们分散到黑色素细胞树突中。为了更好地了解适配器调节电机:货物相互作用,我们在光漂白(SMFRAP)后使用单对黑糖体荧光恢复,以表征Myova,其适配器和黑色素之间的关联动力学。我们发现Myova和MLPH在SMFRAP后迅速恢复,而RAB27A没有,表明Myova和MLPH与黑色素动态缔合,RAB27A没有。这表明动态RAB27A:效应相互作用而不是Rab27a黑色素组:Cytosol循环调节Myova:黑色素组合。因此,MLPH-RAB27A融合蛋白还原Myova SMFRAP,表明它稳定了黑素骨甲Myova。最后,我们测试了动态Myova的功能重要性:黑素糖胺互动。我们发现,虽然Myova-Rab27a融合蛋白分散在Myova缺陷细胞中的黑色素,但枝晶比在野生型细胞中显着较低。鉴于树枝状物是从黑素细胞到角质形成细胞的黑素体体转移的主要位点,我们表明动态Myova:黑色素组相互作用对于体内色素沉着是重要的。

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