Lapierre Lynne A, Manning Elizabeth H, Thomas Kyra S, Caldwell Catherine, Goldenring James R
Department of Surgery, Vanderbilt University Medical Center, Nashville, TN 37232, USA.
Epithelial Biology Center, Vanderbilt University School of Medicine, MRB IV 10435G, 2213 Garland Avenue, Nashville, TN 37232, USA.
Cells. 2025 Jul 24;14(15):1140. doi: 10.3390/cells14151140.
The phosphorylation of Rab10 (pT73-Rab10) by LRRK2 promotes the establishment of epithelial cell polarity by controlling the trafficking to the primary cilia membrane of cilia-resident proteins and signaling proteins. Previous studies have identified a site in the globular tail domain of MYO5A that specifically binds to only the phosphorylated form of Rab10. In this work, we have demonstrated that pT73-Rab10 does not associate with the globular tail of MYO5B. We have mapped the putative binding site to a required three amino acids (MEN, 1473-1475) in the MYO5A globular tail domain that are not found in the MYO5B globular tail. Substitution of the MEN amino acid sequence found in MYO5A into the paralogous position in the MYO5B globular tail conferred the ability to associate with pT73-Rab10. The results demonstrate that the interactors with MYO5A and MYO5B are not completely overlapping and that the interaction of pT73-Rab10 is specific to the MYO5A globular tail domain.
LRRK2介导的Rab10磷酸化(pT73-Rab10)通过调控纤毛驻留蛋白和信号蛋白向初级纤毛膜的转运,促进上皮细胞极性的建立。先前的研究已在MYO5A的球状尾部结构域中确定了一个位点,该位点仅特异性结合Rab10的磷酸化形式。在本研究中,我们证实pT73-Rab10不与MYO5B的球状尾部结合。我们已将假定的结合位点定位到MYO5A球状尾部结构域中必需的三个氨基酸(MEN,1473-1475),而这些氨基酸在MYO5B球状尾部中不存在。将MYO5A中发现的MEN氨基酸序列替换到MYO5B球状尾部的同源位置,使其具有与pT73-Rab10结合的能力。结果表明,与MYO5A和MYO5B相互作用的蛋白并不完全重叠,且pT73-Rab10的相互作用对MYO5A球状尾部结构域具有特异性。