4.4 Article

Regulatory dissociation of Tctex-1 light chain from dynein complex is essential for the apical delivery of rhodopsin

期刊

TRAFFIC
卷 7, 期 11, 页码 1495-1502

出版社

BLACKWELL PUBLISHING
DOI: 10.1111/j.1600-0854.2006.00482.x

关键词

apical transport; cytoplasmic dynein; rhodopsin; Tctex-1

资金

  1. NEI NIH HHS [R01 EY008538, R01 EY011307, R01 EY016805, EY11307] Funding Source: Medline
  2. NIGMS NIH HHS [GM 34107, R01 GM034107] Funding Source: Medline

向作者/读者索取更多资源

Post-Golgi to apical surface delivery in polarized epithelial cells requires the cytoplasmic dynein motor complex. However, the nature of dynein-cargo interactions and their underlying regulation are largely unknown. Previous studies have shown that the apical surface targeting of rhodopsin requires the dynein light chain, Tctex-1, which binds directly to both dynein intermediate chain (IC) and rhodopsin. In this report, we show that the S82E mutant of Tctex-1, which mimics Tctex-1 phosphorylated at serine 82, has a reduced affinity for dynein IC but not for rhodopsin. Velocity sedimentation experiments further suggest that S82E is not incorporated into the dynein complex. The dominant-negative effect of S82E causes rhodopsin mislocalization in polarized Madin-Darby canine kidney (MDCK) cells. The S82A mutant, which mimics dephosphorylated Tctex-1, can be incorporated into dynein complex but is impaired in its release. Expression of S82A also causes disruption of the apical localization of rhodopsin in MDCK cells. Taken together, these results suggest that the dynein complex disassembles to release cargo due to the specific phosphorylation of Tctex-1 at the S82 residue and that this process is critical for the apical delivery of membrane cargoes.

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