RRC ID 67798
著者 Fujisawa S, Qiu H, Nozaki S, Chiba S, Katoh Y, Nakayama K.
タイトル ARL3 and ARL13B GTPases participate in distinct steps of INPP5E targeting to the ciliary membrane.
ジャーナル Biol Open
Abstract INPP5E, a phosphoinositide 5-phosphatase, localizes on the ciliary membrane via its C-terminal prenyl moiety, and maintains the distinct ciliary phosphoinositide composition. The ARL3 GTPase contributes to the ciliary membrane localization of INPP5E by stimulating the release of PDE6D bound to prenylated INPP5E. Another GTPase, ARL13B, which is localized on the ciliary membrane, contributes to the ciliary membrane retention of INPP5E by directly binding to its ciliary targeting sequence. However, as ARL13B was shown to act as a guanine nucleotide exchange factor (GEF) for ARL3, it is also possible that ARL13B indirectly mediates the ciliary INPP5E localization via activating ARL3. We here show that INPP5E is delocalized from cilia in both ARL3-knockout (KO) and ARL13B-KO cells. However, some of the abnormal phenotypes were different between these KO cells, whereas others were found to be common, indicating the parallel roles of ARL3 and ARL13B at least concerning some cellular functions. For several variants of ARL13B, their ability to interact with INPP5E, rather than their ability as an ARL3-GEF, were associated with whether they could rescue the ciliary localization of INPP5E in ARL13B-KO cells. These observations together indicate that ARL13B determines the ciliary localization of INPP5E, mainly by its direct binding to INPP5E.
巻・号 10(9)
公開日 2021-9-15
DOI 10.1242/bio.058843
PII 271969
PMID 34447983
PMC PMC8496693
MeSH ADP-Ribosylation Factors / metabolism* Cilia / metabolism* Humans Phosphoric Monoester Hydrolases / metabolism* Protein Transport / genetics*
IF 2.029
リソース情報
ヒト・動物細胞 293T(RCB2202)