SHOC2
| SHOC2 | ||||||||||||||||||||||||||||||||||||||||||||||||||||||
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| Identifiers | ||||||||||||||||||||||||||||||||||||||||||||||||||||||
| Aliases | SHOC2, SIAA0862, SOC2, SUR8, SHOC2 leucine-rich repeat scaffold protein, leucine rich repeat scaffold protein, SHOC2 leucine rich repeat scaffold protein, NSLH1 | |||||||||||||||||||||||||||||||||||||||||||||||||||||
| External IDs | OMIM: 602775; MGI: 1927197; GeneCards: SHOC2 | |||||||||||||||||||||||||||||||||||||||||||||||||||||
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Leucine-rich repeat protein SHOC-2 is a protein that in humans is encoded by the SHOC2 gene.[5][6][7][8]
Function
[edit]This protein was initially identified in Caenorhabditis elegans as SUR-8/SOC2 and was found to be a critical positive regulator of the ERK1/2 signaling pathway that integrates the Ras and RAF components of the ERK1/2 pathway into a multiprotein complex.[9] Specifically, SHOC2 tethers RAS and PP1C proteins and in close proximity to RAF to dephosphorylate “S259” to enable MAPK signaling.
The best-studied role of SHOC2 is in modulating signals of the extracellular signal-regulated kinase 1 and 2 (ERK1/2) pathway by forming a holophosphatase complex that activates RAF proteins.[10][11]
Dynamic regulation of MAPK signaling
[edit]The amplitude of SHOC2-mediated ERK1/2 signals has been proposed to be regulated by differential regulation of RAF activation at the plasma membrane and internalized endosome compartment[12] as well an alternative model proposing post-translational modifications.[9] SHOC2 ubiquitination mediated by HUWE1 is triggered by growth factor activation of the ERK1/2 pathway and is a prerequisite for the subsequent ubiquitination of the RAF-1 kinase associated with SHOC2.[9] However, the current data has yet to address how these ubiquitin modifications regulate the SHOC2 holophosphatase function to reduce the amplitude of RAF-ERK1/2 signals.
Clinical significance
[edit]It has been shown that activity that results in lipidation (specifically Myristoylation) of SHOC2 can cause Noonan syndrome.[13]
Interactions
[edit]SHOC2 has been shown to interact with the catalytic phosphatase subunit PP1C[10] and MRAS as well as canonical RAS isoforms (H/K/NRAS).[14][15][16] The ternary complex SHOC2-RAS-PP1C functions to dephosphorylate an inhibitory phosphorylation site ('S259') on RAF family proteins to enable MAPK signaling.[10]
References
[edit]- 1 2 3 GRCh38: Ensembl release 89: ENSG00000108061 – Ensembl, May 2017
- 1 2 3 GRCm38: Ensembl release 89: ENSMUSG00000024976 – Ensembl, May 2017
- ↑ "Human PubMed Reference:". National Center for Biotechnology Information, U.S. National Library of Medicine.
- ↑ "Mouse PubMed Reference:". National Center for Biotechnology Information, U.S. National Library of Medicine.
- ↑ Selfors LM, Schutzman JL, Borland CZ, Stern MJ (July 1998). "soc-2 encodes a leucine-rich repeat protein implicated in fibroblast growth factor receptor signaling". Proceedings of the National Academy of Sciences of the United States of America. 95 (12): 6903–6908. Bibcode:1998PNAS...95.6903S. doi:10.1073/pnas.95.12.6903. PMC 22679. PMID 9618511.
- ↑ Sieburth DS, Sun Q, Han M (August 1998). "SUR-8, a conserved Ras-binding protein with leucine-rich repeats, positively regulates Ras-mediated signaling in C. elegans". Cell. 94 (1): 119–130. doi:10.1016/S0092-8674(00)81227-1. PMID 9674433. S2CID 13102676.
- ↑ Li W, Han M, Guan KL (May 2000). "The leucine-rich repeat protein SUR-8 enhances MAP kinase activation and forms a complex with Ras and Raf". Genes & Development. 14 (8): 895–900. doi:10.1101/gad.14.8.895. PMC 316541. PMID 10783161.
- ↑ "Entrez Gene: SHOC2 soc-2 suppressor of clear homolog (C. elegans)".
- 1 2 3 Jang ER, Shi P, Bryant J, Chen J, Dukhande V, Gentry MS, et al. (October 2014). "HUWE1 is a molecular link controlling RAF-1 activity supported by the Shoc2 scaffold". Molecular and Cellular Biology. 34 (19): 3579–3593. doi:10.1128/MCB.00811-14. PMC 4187736. PMID 25022756.
- 1 2 3 Rodriguez-Viciana P, Oses-Prieto J, Burlingame A, Fried M, McCormick F (April 2006). "A phosphatase holoenzyme comprised of Shoc2/Sur8 and the catalytic subunit of PP1 functions as an M-Ras effector to modulate Raf activity". Molecular Cell. 22: 217–230. doi:10.1016/j.molcel.2006.03.027. PMID 16630891.
- ↑ Kwon JJ, Hahn WC (2021). "A Leucine-Rich Repeat Protein Provides a SHOC2 the RAS Circuit: a Structure-Function Perspective". Molecular and Cellular Biology. 41 e00627-20. doi:10.1128/MCB.00627-20. PMC 8088128. PMID 33526449.
- ↑ Boned Del RI, Young LC, Sari S, Jones GG, Ringham-Terry B, Hartig N, et al. (2019). "SHOC2 complex-driven RAF dimerization selectively contributes to ERK pathway dynamics". Proceedings of the National Academy of Sciences of the United States of America. 116: 13330–13339. doi:10.1073/pnas.1902658116. PMC 6613145. PMID 31213532.
- ↑ Cordeddu V, Di Schiavi E, Pennacchio LA, Ma'ayan A, Sarkozy A, Fodale V, et al. (September 2009). "Mutation of SHOC2 promotes aberrant protein N-myristoylation and causes Noonan-like syndrome with loose anagen hair". Nature Genetics. 41 (9): 1022–1026. doi:10.1038/ng.425. PMC 2765465. PMID 19684605.
- ↑ Liau NP, Johnson MC, Izadi S, Gerosa L, Hammel M, Bruning JM, et al. (2022). "Structural basis for SHOC2 modulation of RAS signalling". Nature. 609: 400–407. doi:10.1038/s41586-022-04838-3. PMC 9452301. PMID 35768504.
- ↑ Kwon JJ, Hajian B, Bian Y, Young LC, Amor AJ, Fuller JR, et al. (2022). "Structure-function analysis of the SHOC2-MRAS-PP1C holophosphatase complex". Nature. 609: 408–415. doi:10.1038/s41586-022-04928-2. PMC 9694338. PMID 35831509.
- ↑ Hauseman ZJ, Fodor M, Dhembi A, Viscomi J, Egli D, Bleu M, et al. (2022). "Structure of the MRAS-SHOC2-PP1C phosphatase complex". Nature. 609: 416–423. doi:10.1038/s41586-022-05086-1. PMC 9452295. PMID 35830882.
Further reading
[edit]- Dai P, Xiong WC, Mei L (2006). "Erbin inhibits RAF activation by disrupting the sur-8-Ras-Raf complex". The Journal of Biological Chemistry. 281 (2): 927–933. doi:10.1074/jbc.M507360200. PMID 16301319.
- Nagase T, Ishikawa K, Suyama M, Kikuno R, Hirosawa M, Miyajima N, et al. (1998). "Prediction of the coding sequences of unidentified human genes. XII. The complete sequences of 100 new cDNA clones from brain which code for large proteins in vitro". DNA Research. 5 (6): 355–364. doi:10.1093/dnares/5.6.355. PMID 10048485.