Cargando…

MAST4 promotes primary ciliary resorption through phosphorylation of Tctex-1

The primary cilium undergoes cell cycle–dependent assembly and disassembly. Dysregulated ciliary dynamics are associated with several pathological conditions called ciliopathies. Previous studies showed that the localization of phosphorylated Tctex-1 at Thr94 (T94) at the ciliary base critically reg...

Descripción completa

Detalles Bibliográficos
Autores principales: Sakaji, Kensuke, Ebrahimiazar, Sara, Harigae, Yasuhiro, Ishibashi, Kenichi, Sato, Takeya, Yoshikawa, Takeo, Atsumi, Gen-ichi, Sung, Ching-Hwa, Saito, Masaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10509483/
https://www.ncbi.nlm.nih.gov/pubmed/37726137
http://dx.doi.org/10.26508/lsa.202301947
_version_ 1785107746855583744
author Sakaji, Kensuke
Ebrahimiazar, Sara
Harigae, Yasuhiro
Ishibashi, Kenichi
Sato, Takeya
Yoshikawa, Takeo
Atsumi, Gen-ichi
Sung, Ching-Hwa
Saito, Masaki
author_facet Sakaji, Kensuke
Ebrahimiazar, Sara
Harigae, Yasuhiro
Ishibashi, Kenichi
Sato, Takeya
Yoshikawa, Takeo
Atsumi, Gen-ichi
Sung, Ching-Hwa
Saito, Masaki
author_sort Sakaji, Kensuke
collection PubMed
description The primary cilium undergoes cell cycle–dependent assembly and disassembly. Dysregulated ciliary dynamics are associated with several pathological conditions called ciliopathies. Previous studies showed that the localization of phosphorylated Tctex-1 at Thr94 (T94) at the ciliary base critically regulates ciliary resorption by accelerating actin remodeling and ciliary pocket membrane endocytosis. Here, we show that microtubule-associated serine/threonine kinase family member 4 (MAST4) is localized at the primary cilium. Suppressing MAST4 blocks serum-induced ciliary resorption, and overexpressing MAST4 accelerates ciliary resorption. Tctex-1 binds to the kinase domain of MAST4, in which the R503 and D504 residues are key to MAST4-mediated ciliary resorption. The ciliary resorption and the ciliary base localization of phospho-(T94)Tctex-1 are blocked by the knockdown of MAST4 or the expression of the catalytic-inactive site-directed MAST4 mutants. Moreover, MAST4 is required for Cdc42 activation and Rab5-mediated periciliary membrane endocytosis during ciliary resorption. These results support that MAST4 is a novel kinase that regulates ciliary resorption by modulating the ciliary base localization of phospho-(T94)Tctex-1. MAST4 is a potential new target for treating ciliopathies causally by ciliary resorption defects.
format Online
Article
Text
id pubmed-10509483
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Life Science Alliance LLC
record_format MEDLINE/PubMed
spelling pubmed-105094832023-09-21 MAST4 promotes primary ciliary resorption through phosphorylation of Tctex-1 Sakaji, Kensuke Ebrahimiazar, Sara Harigae, Yasuhiro Ishibashi, Kenichi Sato, Takeya Yoshikawa, Takeo Atsumi, Gen-ichi Sung, Ching-Hwa Saito, Masaki Life Sci Alliance Research Articles The primary cilium undergoes cell cycle–dependent assembly and disassembly. Dysregulated ciliary dynamics are associated with several pathological conditions called ciliopathies. Previous studies showed that the localization of phosphorylated Tctex-1 at Thr94 (T94) at the ciliary base critically regulates ciliary resorption by accelerating actin remodeling and ciliary pocket membrane endocytosis. Here, we show that microtubule-associated serine/threonine kinase family member 4 (MAST4) is localized at the primary cilium. Suppressing MAST4 blocks serum-induced ciliary resorption, and overexpressing MAST4 accelerates ciliary resorption. Tctex-1 binds to the kinase domain of MAST4, in which the R503 and D504 residues are key to MAST4-mediated ciliary resorption. The ciliary resorption and the ciliary base localization of phospho-(T94)Tctex-1 are blocked by the knockdown of MAST4 or the expression of the catalytic-inactive site-directed MAST4 mutants. Moreover, MAST4 is required for Cdc42 activation and Rab5-mediated periciliary membrane endocytosis during ciliary resorption. These results support that MAST4 is a novel kinase that regulates ciliary resorption by modulating the ciliary base localization of phospho-(T94)Tctex-1. MAST4 is a potential new target for treating ciliopathies causally by ciliary resorption defects. Life Science Alliance LLC 2023-09-19 /pmc/articles/PMC10509483/ /pubmed/37726137 http://dx.doi.org/10.26508/lsa.202301947 Text en © 2023 Sakaji et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Sakaji, Kensuke
Ebrahimiazar, Sara
Harigae, Yasuhiro
Ishibashi, Kenichi
Sato, Takeya
Yoshikawa, Takeo
Atsumi, Gen-ichi
Sung, Ching-Hwa
Saito, Masaki
MAST4 promotes primary ciliary resorption through phosphorylation of Tctex-1
title MAST4 promotes primary ciliary resorption through phosphorylation of Tctex-1
title_full MAST4 promotes primary ciliary resorption through phosphorylation of Tctex-1
title_fullStr MAST4 promotes primary ciliary resorption through phosphorylation of Tctex-1
title_full_unstemmed MAST4 promotes primary ciliary resorption through phosphorylation of Tctex-1
title_short MAST4 promotes primary ciliary resorption through phosphorylation of Tctex-1
title_sort mast4 promotes primary ciliary resorption through phosphorylation of tctex-1
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10509483/
https://www.ncbi.nlm.nih.gov/pubmed/37726137
http://dx.doi.org/10.26508/lsa.202301947
work_keys_str_mv AT sakajikensuke mast4promotesprimaryciliaryresorptionthroughphosphorylationoftctex1
AT ebrahimiazarsara mast4promotesprimaryciliaryresorptionthroughphosphorylationoftctex1
AT harigaeyasuhiro mast4promotesprimaryciliaryresorptionthroughphosphorylationoftctex1
AT ishibashikenichi mast4promotesprimaryciliaryresorptionthroughphosphorylationoftctex1
AT satotakeya mast4promotesprimaryciliaryresorptionthroughphosphorylationoftctex1
AT yoshikawatakeo mast4promotesprimaryciliaryresorptionthroughphosphorylationoftctex1
AT atsumigenichi mast4promotesprimaryciliaryresorptionthroughphosphorylationoftctex1
AT sungchinghwa mast4promotesprimaryciliaryresorptionthroughphosphorylationoftctex1
AT saitomasaki mast4promotesprimaryciliaryresorptionthroughphosphorylationoftctex1