Fatty acylated caveolin-2 is a substrate of insulin receptor tyrosine kinase for insulin receptor substrate-1-directed signaling activationopen access
- Authors
- Kwon, Hayeong; Lee, Jaewoong; Jeong, Kyuho; Jang, Donghwan; Pak, Yunbae
- Issue Date
- May-2015
- Publisher
- ELSEVIER
- Keywords
- Caveolin-2; Fatty acylation; Insulin receptor tyrosine kinase; Insulin receptor substrate-1; Glucose uptake; Cell proliferation and survival
- Citation
- BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH, v.1853, no.5, pp 1022 - 1034
- Pages
- 13
- Indexed
- SCI
SCIE
SCOPUS
- Journal Title
- BIOCHIMICA ET BIOPHYSICA ACTA-MOLECULAR CELL RESEARCH
- Volume
- 1853
- Number
- 5
- Start Page
- 1022
- End Page
- 1034
- URI
- https://scholarworks.gnu.ac.kr/handle/sw.gnu/17287
- DOI
- 10.1016/j.bbamcr.2015.02.002
- ISSN
- 0167-4889
1879-2596
- Abstract
- Here, we demonstrate that insulin receptor (IR) tyrosine kinase catalyzes Tyr-19 and Tyr-27 phosphorylation of caveolin-2 (cav-2), leading to stimulation of signaling proteins downstream of IR, and that the catalysis is dependent on fatty acylation status of cav-2, promoting its interaction with IR. Cav-2 is myristoylated at Gly-2 and palmitoylated at Cys-109, Cys-122, and Cys-145. The fatty acylation deficient mutants are unable to localize in the plasma membrane and not phosphorylated by IR tyrosine kinase. IR interacts with the C-terminal domain of cav-2 containing the cysteines for palmitoylation. IR mutants, Y999F and K1057A, but not W1220S, fail interaction with cav-2. Insulin receptor substrate-1 (IRS-1) is recruited to interact with the IR-catalyzed phosphotyrosine cav-2, which facilitates IRS-1 association with and activation by IR to initiate IRS-1-mediated downstream signaling. Cav-2 fatty acylation and tyrosine phosphorylation are necessary for the IRS-1-dependent PI3K-Akt and ERK activations responsible for glucose uptake and cell survival and proliferation. In conclusion, fatty acylated cav-2 is a new substrate of IR tyrosine kinase, and the fatty acylation and phosphorylation of cav-2 present novel mechanisms by which insulin signaling is activated. (C) 2015 Elsevier B.V. All rights reserved.
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