Citations for
1STIM2, SYT1
Presynaptic store-operated Ca2+ entry drives excitatory spontaneous neurotransmission and augments endoplasmic reticulum stress
Chanaday NL, Nosyreva E, Shin OH, Zhang H, Aklan I, Atasoy D, Bezprozvanny I, Kavalali ET.
Neuron. Apr 21;109(8):1314-1332.e5. doi: 10.1016/j.neuron.2021.02.023. Epub 2021 Mar 11. 2021
2STIM1, STIM2
Deficient for endoplasmic reticulum calcium sensors Stim1 and Stim2 affects aberrant antibody affinity maturation in B cells.
Mao X, Zhang J, Han Y, Luan C, Hu Y, Hao Z, Chen M.
Oncotarget ncotarget. 2016 Aug 27. doi: 10.18632/oncotarget.11659. [Epub ahead of print] 2016
3STIM1, STIM2
Deficient for endoplasmic reticulum calcium sensors Stim1 and Stim2 affects aberrant antibody affinity maturation in B cells.
Mao X, Zhang J, Han Y, Luan C, Hu Y, Hao Z, Chen M.
Oncotarget ncotarget. 2016 Aug 27. doi: 10.18632/oncotarget.11659. [Epub ahead of print] 2016
4STIM2
STIM2 protects hippocampal mushroom spines from amyloid synaptotoxicity.
Popugaeva E, Pchitskaya E, Speshilova A, Alexandrov S, Zhang H, Vlasova O, Bezprozvanny I.
Mol Neurodegener 10:37. doi: 10.1186/s13024-015-0034-7. 2015
5ORAI1, STIM2
Alternative splicing converts STIM2 from an activator to an inhibitor of store-operated calcium channels.
Rana A, Yen M, Sadaghiani AM, Malmersjö S, Park CY, Dolmetsch RE, Lewis RS.
J Cell Biol 209(5):653-69. doi: 10.1083/jcb.201412060. 2015
6ORAI1, STIM2
A STIM2 splice variant negatively regulates store-operated calcium entry.
Miederer AM, Alansary D, Schwär G, Lee PH, Jung M, Helms V, Niemeyer BA.
Nat Commun 6:6899. doi: 10.1038/ncomms7899. 2015
7STIM2
STIM2 regulates PKA-dependent phosphorylation and trafficking of AMPARs.
Garcia-Alvarez G, Lu B, Yap KA, Wong LC, Thevathasan JV, Lim L, Ji F, Tan KW, Mancuso JJ, Tang W, Poon SY, Augustine GJ, Fivaz M.
Mol Biol Cell 26(6):1141-59. doi: 10.1091/mbc.E14-07-1222. 2015
8STIM1, STIM2
STIM2 enhances receptor-stimulated Ca²⁺ signaling by promoting recruitment of STIM1 to the endoplasmic reticulum-plasma membrane junctions.
Ong HL, de Souza LB, Zheng C, Cheng KT, Liu X, Goldsmith CM, Feske S, Ambudkar IS.
Sci Signal 8(359):ra3. doi: 10.1126/scisignal.2005748. Erratum in: Sci Signal. 2015 Feb 3;8(362):er2. 2015
9ORAI1, STIM1, STIM2
STIM1, STIM2, and Orai1 regulate store-operated calcium entry and purinergic activation of microglia.
Michaelis M, Nieswandt B, Stegner D, Eilers J, Kraft R.
Glia 63(4):652-63. doi: 10.1002/glia.22775. 2015
10STIM1, STIM2
CD4⁺ and CD8⁺ T cell-dependent antiviral immunity requires STIM1 and STIM2.
Shaw PJ, Weidinger C, Vaeth M, Luethy K, Kaech SM, Feske S.
J Clin Invest 124(10):4549-63. doi: 10.1172/JCI76602. 2014
11ORAI1, STIM1, STIM2
Distinct Orai-coupling domains in STIM1 and STIM2 define the Orai-activating site.
Wang X, Wang Y, Zhou Y, Hendron E, Mancarella S, Andrake MD, Rothberg BS, Soboloff J, Gill DL.
Nat Commun 5:3183. doi: 10.1038/ncomms4183. 2014
12STIM1, STIM2
Oligomerization and Ca2+/calmodulin control binding of the ER Ca2+-sensors STIM1 and STIM2 to plasma membrane lipids.
Bhardwaj R, Müller HM, Nickel W, Seedorf M.
Biosci Rep 33(5). pii: e00077. doi: 10.1042/BSR20130089. 2013
13STIM1, STIM2
Agonist-selected T cell development requires strong T cell receptor signaling and store-operated calcium entry.
Oh-Hora M, Komatsu N, Pishyareh M, Feske S, Hori S, Taniguchi M, Rao A, Takayanagi H.
Immunity 38(5):881-95. doi: 10.1016/j.immuni.2013.02.008. 2013
14SARAF, STIM2
SARAF inactivates the store operated calcium entry machinery to prevent excess calcium refilling.
Palty R, Raveh A, Kaminsky I, Meller R, Reuveny E.
Cell 149(2):425-38. doi: 10.1016/j.cell.2012.01.055. Epub 2012 Mar 29. 2012
15STIM1, STIM2
STIM1 and STIM2 protein deficiency in T lymphocytes underlies development of the exocrine gland autoimmune disease, Sjogren's syndrome.
Cheng KT, Alevizos I, Liu X, Swaim WD, Yin H, Feske S, Oh-hora M, Ambudkar IS.
Proc Natl Acad Sci U S A 109(36):14544-9. doi: 10.1073/pnas.1207354109. Erratum in: Proc Natl Acad Sci U S A. 2012 Nov 6;109(45):18625. 2012
16STIM1, STIM2
Identification of functional domains and novel binding partners of STIM proteins.
Saitoh N, Oritani K, Saito K, Yokota T, Ichii M, Sudo T, Fujita N, Nakajima K, Okada M, Kanakura Y.
J Cell Biochem 112(1):147-56. 2011
17ATP2A3, ORAI1, STIM1, STIM2
STIM1 and STIM2 are located in the acidic Ca2+ stores and associates with Orai1 upon depletion of the acidic stores in human platelets.
Zbidi H, Jardin I, Woodard GE, Lopez JJ, Berna-Erro A, Salido GM, Rosado JA.
J Biol Chem 286(14):12257-70. Epub 2011 Feb 14. 2011
18STIM2
A cytosolic STIM2 preprotein created by signal peptide inefficiency activates ORAI1 in a store-independent manner.
Graham SJ, Dziadek MA, Johnstone LS.
J Biol Chem 286(18):16174-85. Epub 2011 Mar 7. 2011
19ORAI1, ORAI2, ORAI3, STIM1, STIM2
STIM protein coupling in the activation of Orai channels.
Wang Y, Deng X, Zhou Y, Hendron E, Mancarella S, Ritchie MF, Tang XD, Baba Y, Kurosaki T, Mori Y, Soboloff J, Gill DL.
Proc Natl Acad Sci U S A 106(18):7391-6. Epub 2009 Apr 17. 2009
20ORAI1, ORAI2, ORAI3, STIM1, STIM2
STIM and Orai: Dynamic Intermembrane Coupling to Control Cellular Calcium Signals.
Deng X, Wang Y, Zhou Y, Soboloff J, Gill DL.
J Biol Chem 284(34):22501-5. Epub 2009 May 27. 2009
21ORAI1, STIM1, STIM2
The short N-terminal domains of STIM1 and STIM2 control the activation kinetics of Orai1 channels.
Zhou Y, Mancarella S, Wang Y, Yue C, Ritchie M, Gill DL, Soboloff J.
J Biol Chem 284(29):19164-8. Epub 2009 Jun 1. 2009
22ORAI1, ORAI2, ORAI3, STIM1, STIM2
Biochemical and functional properties of the store-operated Ca2+ channels.
Salido GM, Sage SO, Rosado JA.
Cell Signal 21(4):457-61. Epub 2008 Nov 13. Review.PMID: 19049864 2009
23STIM1 , STIM2
Biophysical characterization of the EF-hand and SAM domain containing Ca2+ sensory region of STIM1 and STIM2.
Zheng L, Stathopulos PB, Li GY, Ikura M.
Biochem Biophys Res Commun 369(1):240-6. Epub 2007 Dec 31. 2008
24ORAI1, STIM2
STIM2 protein mediates distinct store-dependent and store-independent modes of CRAC channel activation.
Parvez S, Beck A, Peinelt C, Soboloff J, Lis A, Monteilh-Zoller M, Gill DL, Fleig A, Penner R.
FASEB J 22(3):752-61. Epub 2007 Sep 28.PMID: 17905723 2008
25STIM2
Identification and characterization of the STIM (stromal interaction molecule) gene family: coding for a novel class of transmembrane proteins.
Williams RT, Manji SS, Parker NJ, Hancock MS, Van Stekelenburg L, Eid JP, Senior PV, Kazenwadel JS, Shandala T, Saint R, Smith PJ, Dziadek MA.
Biochem J 357(Pt 3):673-85. 2001
26ATP10D, BEGAIN, CALCOCO1, CDK5RAP2, CERCAM, CIP2A, DHX36, DHX37, DPP10, DTX2, GPR124, GRAMD1A, HCN3, ISLR2, KANK2, KBTBD2, KBTBD2, KIAA1468, KIAA1522, KLHL1, KMT2C, LRCH2, MARK1, MBD5, MYH7B, NUSAP1, PDZD4, PITPNM2, PLCE1, POGK, POLR3E, PPP2R2D, RACGAP1, RCC2, SCAPER, SDK2, SEMA6D, SH3RF1, SPPL2B, STIM2, TSHZ3, UBAP2, URG4, USP28, VPS18, WDR48, WHRN, ZBTB2, ZNF530
Prediction of the coding sequences of unidentified human genes. XVII. The complete sequences of 100 new cDNA clones from brain which code for large proteins in vitro.
Nagase T, Kikuno R, Ishikawa K, Hirosawa M, Ohara O.
DNA Res 7(2):143-50. 2000