Citations for
1STMN2
Loss of mouse Stmn2 function causes motor neuropathy
Guerra San Juan I, Nash LA, Smith KS, Leyton-Jaimes MF, Qian M, Klim JR, Limone F, Dorr AB, Couto A, Pintacuda G, Joseph BJ, Whisenant DE, Noble C, Melnik V, Potter D, Holmes A, Burberry A, Verhage M, Eggan K.
Neuron. May 18;110(10):1671-1688.e6. doi: 10.1016/j.neuron.2022.02.011. Epub 2022 Mar 15. 2022
2STMN2, TARDBP
Loss of Stathmin-2, a hallmark of TDP-43-associated ALS, causes motor neuropathy.
Krus KL, Strickland A, Yamada Y, Devault L, Schmidt RE, Bloom AJ, Milbrandt J, DiAntonio A.
Cell Rep. Jun 28;39(13):111001. doi: 10.1016/j.celrep.2022.111001. 2022
3STMN2, TARDBP
Connecting TDP-43 Pathology with Neuropathy.
Klim JR, Pintacuda G, Nash LA, Guerra San Juan I, Eggan K.
Trends Neurosci. Jun;44(6):424-440. doi: 10.1016/j.tins.2021.02.008. Epub 2021 Apr 5. 2021
4STMN2
Novel STMN2 Variant Linked to Amyotrophic Lateral Sclerosis Risk and Clinical Phenotype
Theunissen F, Anderton RS, Mastaglia FL, Flynn LL, Winter SJ, James I, Bedlack R, Hodgetts S, Fletcher S, Wilton SD, Laing NG, MacShane M, Needham M, Saunders A, Mackay-Sim A, Melamed Z, Ravits J, Cleveland DW, Akkari PA.
Front Aging Neurosci. Mar 26;13:658226. doi: 10.3389/fnagi.2021.658226. 2021
5STMN2
Stathmin-2 Mediates Glucagon Secretion From Pancreatic α-Cells.
Asadi F, Dhanvantari S.
Front Endocrinol (Lausanne) Feb 4;11:29. doi: 10.3389/fendo.2020.00029. 2020
6STMN2
ALS-implicated protein TDP-43 sustains levels of STMN2, a mediator of motor neuron growth and repair
Klim JR, Williams LA, Limone F, Guerra San Juan I, Davis-Dusenbery BN, Mordes DA, Burberry A, Steinbaugh MJ, Gamage KK, Kirchner R, Moccia R, Cassel SH, Chen K, Wainger BJ, Woolf CJ, Eggan K
Nat Neurosci. Feb;22(2):167-179. doi: 10.1038/s41593-018-0300-4. Epub 2019 Jan 14. 2019
7STMN2, TARDBP
Premature polyadenylation-mediated loss of stathmin-2 is a hallmark of TDP-43-dependent neurodegeneration
Melamed Z, López-Erauskin J, Baughn MW, Zhang O, Drenner K, Sun Y, Freyermuth F, McMahon MA, Beccari MS, Artates JW, Ohkubo T, Rodriguez M, Lin N, Wu D, Bennett CF, Rigo F, Da Cruz S, Ravits J, Lagier-Tourenne C, Cleveland DW.
Nat Neurosci. Feb;22(2):180-190. doi: 10.1038/s41593-018-0293-z. Epub 2019 Jan 14. 2019
8STMN2, WDR47
WD40-repeat 47, a microtubule-associated protein, is essential for brain development and autophagy
Kannan M, Bayam E, Wagner C, Rinaldi B, Kretz PF, Tilly P, Roos M, McGillewie L, Bär S, Minocha S, Chevalier C, Po C; Sanger Mouse Genetics Project, Chelly J, Mandel JL, Borgatti R, Piton A, Kinnear C, Loos B, Adams DJ, Hérault Y, Collins SC, Friant S, Godin JD, Yalcin B.
Proc Natl Acad Sci U S A Oct 31;114(44):E9308-E9317. doi: 10.1073/pnas.1713625114. Epub 2017 Oct 12. 2017
9STMN2
Dynamic regulation of SCG10 in regenerating axons after injury.
Shin JE, Geisler S, DiAntonio A.
Exp Neurol. Feb;252:1-11. doi: 10.1016/j.expneurol.2013.11.007. Epub 2013 Nov 15. 2014
10PAK4, STMN2
PAK4 kinase-mediated SCG10 phosphorylation involved in gastric cancer metastasis.
Guo Q, Su N, Zhang J, Li X, Miao Z, Wang G, Cheng M, Xu H, Cao L, Li F.
Oncogene ncogene. 2013 Jul 29. doi: 10.1038/onc.2013.296. [Epub ahead of print] 2013
11STMN2
SCG10 is a JNK target in the axonal degeneration pathway.
Shin JE, Miller BR, Babetto E, Cho Y, Sasaki Y, Qayum S, Russler EV, Cavalli V, Milbrandt J, DiAntonio A.
Proc Natl Acad Sci U S A. 2012 . PMID: Dec 26;109(52):E3696-705. doi: 10.1073/pnas.1216204109. Epub 2012 Nov 27 2012
12ELP1, HSAN3, STMN2
IKAP/Elp1 involvement in cytoskeleton regulation and implication for familial dysautonomia.
Cheishvili D, Maayan C, Cohen-Kupiec R, Lefler S, Weil M, Ast G, Razin A.
Hum Mol Genet 20(8):1585-94. Epub 2011 Jan 27. 2011
13STMN2, STMN3
Subcellular Golgi localization of stathmin family proteins is promoted by a specific set of DHHC palmitoyl transferases.
Levy AD, Devignot V, Fukata Y, Fukata M, Sobel A, Chauvin S.
Mol Biol Cell. 22(11):1930-42. 2011
14CIB1, STMN2
Calmyrin1 binds to SCG10 protein (stathmin2) to modulate neurite outgrowth.
Sobczak A, Debowska K, Blazejczyk M, Kreutz MR, Kuznicki J, Wojda U.
Biochim Biophys Acta 1813(5):1025-37. doi: 10.1016/j.bbamcr.2010.12.023. Epub 2011 Jan 6. 2011
15GOSHS, KIFBP, STMN2
KBP interacts with SCG10, linking Goldberg-Shprintzen syndrome to microtubule dynamics and neuronal differentiation.
Alves MM, Burzynski G, Delalande JM, Osinga J, van der Goot A, Dolga AM, de Graaff E, Brooks AS, Metzger M, Eisel UL, Shepherd I, Eggen BJ, Hofstra RM.
Hum Mol Genet 19(18):3642-51. Epub 2010 Jul 9.PMID: 20621975 2010
16KIFBP, STMN2
Mutations in SCG10 are not involved in Hirschsprung disease.
Alves MM, Osinga J, Verheij JB, Metzger M, Eggen BJ, Hofstra RM.
PLoS One 5(12):e15144.PMID: 21187955 2010
17RND1, STMN2
Rnd1 regulates axon extension by enhancing the microtubule destabilizing activity of SCG10.
Li YH, Ghavampur S, Bondallaz P, Will L, Grenningloh G, Püschel AW.
J Biol Chem 284(1):363-71. Epub 2008 Nov 7. 2009
18BRSK1, BRSK2, CDC42, DCX, DOCK7, DPYSL2, GSK3A, GSK3B, IGF1, KIF13B, KIF2A, KLC1, LIS1, MAP1B, MAP2, MAPK8, MAPT, NIN, PAFAH1B1, SCG10, SCLIP, STK11, STMN1, STMN2, STMN3, STRADA
Microtubule assembly, organization and dynamics in axons and dendrites.
Conde C, Caceres A.
Nat Rev Neurosci. 10(5):319-32. 2009
19STMN2
Stathmin-like 2, a developmentally-associated neuronal marker, is expressed and modulated during osteogenesis of human mesenchymal stem cells.
Chiellini C, Grenningloh G, Cochet O, Scheideler M, Trajanoski Z, Ailhaud G, Dani C, Amri EZ.
Biochem Biophys Res Commun 374(1):64-8. Epub 2008 Jul 9. 2008
20CHGA, STMN2, STMN3
The trans-Golgi proteins SCLIP and SCG10 interact with chromogranin A to regulate neuroendocrine secretion.
Mahapatra NR, Taupenot L, Courel M, Mahata SK, O'Connor DT.
Biochemistry 47(27):7167-78. Epub 2008 Jun 13. 2008
21STMN2
BRI3 associates with SCG10 and attenuates NGF-induced neurite outgrowth in PC12 cells.
Gong Y, Wu J, Qiang H, Liu B, Chi Z, Chen T, Yin B, Peng X, Yuan J.
BMB Rep. 41(4):287-93. 2008
22ADCY3,GAP43,KLF7,STMN2
Identification of genes regulated by transcription factor KLF7 in differentiating olfactory sensory neurons.
Kajimura D, Dragomir C, Ramirez F, Laub F.
Gene 388(1-2):34-42. Epub 2006 Oct 10. 2007
23STMN2, STMN3
The "SCG10-LIke Protein" SCLIP is a novel regulator of axonal branching in hippocampal neurons, unlike SCG10.
Poulain FE, Sobel A.
Mol Cell Neurosci 34(2):137-46. Epub 2006 Dec 4. 2007
24STMN2
Stathmin family protein SCG10 differentially regulates the plus and minus end dynamics of microtubules at steady state in vitro: implications for its role in neurite outgrowth.
Manna T, Grenningloh G, Miller HP, Wilson L.
Biochemistry 46(11):3543-52. Epub 2007 Feb 21. 2007
25DYRK1A, GMNN, TFAP4, STMN2, REST
A repressor complex, AP4 transcription factor and geminin, negatively regulates expression of target genes in nonneuronal cells.
Kim MY, Jeong BC, Lee JH, Kee HJ, Kook H, Kim NS, Kim YH, Kim JK, Ahn KY, Kim KK.
Proc Natl Acad Sci U S A 103(35):13074-9. Epub 2006 Aug 21. 2006
26STMN1, STMN2, STMN3, STMN4
Expression of stathmin family genes in human tissues: non-neural-restricted expression for SCLIP.
Bieche I, Maucuer A, Laurendeau I, Lachkar S, Spano AJ, Frankfurter A, Levy P, Manceau V, Sobel A, Vidaud M, Curmi PA.
Genomics 81(4):400-10. 2003
27STMN2, TRPC5
TRPC5 is a regulator of hippocampal neurite length and growth cone morphology.
Greka A, Navarro B, Oancea E, Duggan A, Clapham DE.
Nat Neurosci 6(8):837-45. 2003
28STMN2
RGS6 interacts with SCG10 and promotes neuronal differentiation. Role of the G gamma subunit-like (GGL) domain of RGS6.
Liu Z, Chatterjee TK, Fisher RA.
J Biol Chem. 277(40):37832-9. 2002
29STMN2
Neuronal target genes of the neuron-restrictive silencer factor in neurospheres derived from fetuses with Down's syndrome: a gene expression study.
Bahn, S.; Mimmack, M.; Ryan, M.; Caldwell, M. A.; Jauniaux, E.; Starkey, M.; Svendsen, C. N.; Emson, P.
Lancet 359: 310-315 2002
30STMN2
The interaction of RGSZ1 with SCG10 attenuates the ability of SCG10 to promote microtubule disassembly.
Nixon AB, Grenningloh G, Casey PJ.
J Biol Chem. 277(20):18127-33. 2002
31STMN1, STMN2, STMN2
Expression of stathmin and SCG10 proteins in the olfactory neurogenesis during development and after lesion in the adulthood.
Camoletto P, Colesanti A, Ozon S, Sobel A, Fasolo A.
Brain Res Bull 54(1):19-28. 2001
32AIF1L, ANKHD1, ANKRD20A1, ANKRD27, ANKRD32, APH1B, APOLD1, ARMC4, ATXN10, C10orf10, C10orf10, C10orf118, C2orf14, C2orf16, C6orf60, C6orf62, C8orf71, CALCOCO1, CAMKK1, CCDC113, CCDC135, CCDC9, CCDC90B, CCNB2, CD99L2, CHPF, CLIC4, CLPB, CRELD1, CYBRD1, DDX47, DHRS7B, ESPN, FIP1L1, FLYWCH1, FYTTD1, GABARAPL1, GOLT1B, GPS2, GRIPAP1, HIGD1A, IER3IP1, KIF18A, KIRREL2, KLC2, LHX6, LMAN2L, MAF1, MED23, MIS12, MOB4, MYCBPAP, NCALD, NELF, NELFB, NRBF2, NRIP2, NRIP2, NRSN2, NUDT12, PCBD2, PMFBP1, PRPF31, PRSS23, QRSL1, RGMA, RGMB, RNF123, RNF146, RWDD3, SAMHD1, SECISBP2, SEMA4F, SERBP1, SERP1, SH3BP5L, SLC25A24, SLC25A39, SLC37A3, SLC41A2, SLC6A16, SMC6, SPEF1, STMN2, TARDBP, TBC1D3, TBL2, TFIP11, TIGD6, TIMMDC1, TMEM117, TMEM186, TNB, TRAF7, TRAPPC8, TSC22D3, TSPAN14, TWF2, UBA5, UNC50, WDR24, WDR37, WDR91, WSB1, YIPF3, ZC3H13, ZMYND12, ZMYND15, ZRANB3
Toward a catalog of human genes and proteins: sequencing and analysis of 500 novel complete protein coding human cDNAs.
Wiemann S, Weil B, Wellenreuther R, Gassenhuber J, Glassl S, Ansorge W, Bocher M, Blocker H, Bauersachs S, Blum H, Lauber J, Dusterhoft A, Beyer A, Kohrer K, Strack N, Mewes HW, Ottenwalder B, Obermaier B, Tampe J, Heubner D, Wambutt R, Korn B, Klein M, Poustka A.
Genome Res 11(3):422-35. 2001
33STMN2
c-Jun N-terminal kinase-3 (JNK3)/stress-activated protein kinase-beta (SAPKbeta) binds and phosphorylates the neuronal microtubule regulator SCG10.
Neidhart S, Antonsson B, Gilliéron C, Vilbois F, Grenningloh G, Arkinstall S.
FEBS Lett. 508(2):259-64. 2001
34ADIPOR1, AIG1, AMDHD2, ANKHD1, ANKRD20A1, ANKRD27, ANKRD32, APH1A, APH1B, APIP, APOLD1, ARS2, ASCC1, ATXN10, BOLA1, C10orf10, C14orf166, C19orf56, C20orf109, C20orf4, C2orf14, C2orf16, C6orf60, C6orf62, CALCOCO1, CAMKK1, CCDC113, CCDC53, CCDC9, CCNB2, CD99L2, CDK5RAP1, CDK5RAP1, CGI-96, CHMP5, CHPF, CIAO2B, CLIC4, CLPB, COPZ1, COQ4, COQ6, CRELD1, CUTC, CYBRD1, DDX47, DERA, DHRS7, DHRS7B, DHRS7B, DPH5, DTNB, DYNC1LI2, EEF1AKNMT, ELOVL1, EMC9, ERGIC3, ESPN, EXOSC1, EXOSC3, FAHD2A, FAM108B1, FAM18B, FAM32A, FAM82B, FCF1, FIP1L1, FLYWCH1, FYTTD1, GABARAPL1, GET4, GLOD4, GLRX2, GOLT1B, GOLT1B, GPR89A, GPS2, GRIPAP1, HDDC2, HDGFRP3, HIGD1A, IER3IP1, IFT52, ISOC1, KIF18A, KIF20B, KIRREL2, KL3, KLC2, LACTB2, LHX6, LMAN2L, LUC7L2, MAF1, MAGMAS, MECR, MED23, MED31, MEMO, METTL9, MIS12, MOABHD5, MOB4, MPC1, MRPL11, MRPL2, MRPL4, MRPL48, MRPS15, MRPS16, MRPS16P2, MRPS18C, MRPS23, MRPS33, MTCH1, MTERF3, MTO1, MYCBPAP, NCALD, NCIE2, NDUFAF1, NELF, NELFB, NFU1, NMD3, NOSIP, NRBF2, NRIP2, NRIP2, NRSN2, NUDT12, OTUD6B, PARVB, PCBD2, PHF20L1, PIGT, PMFBP1, PNAS-4, PRPF31, PRSS23, PTRH2, QRSL1, RBMX2, RGMA, RGMB, RNF103-CHMP3, RNF123, RNF146, RRNAD1, RRP15, RWDD1, RWDD3, SAMHD1, SAMM50, SCCPDH, SECISBP2, SEMA4F, SERBP1, SERBP1, SERP1, SH3BP5L, SIDT2, SLC25A24, SLC25A39, SLC35C2, SLC37A3, SLC41A2, SLC6A16, SLMO2, SMC6, SPEF1, SQRDL, STARD10, STMN2, SYF2, TARDBP, TBC1D3, TBL2, TFB1M, TFIP11, THAP4, THAP4, TIGD6, TIMMDC1, TMED5, TMED7, TMEM47, TPPP3, TRAF7, TRAPPC12, TRAPPC4, TRMT6, TRNT1, TSC22D3, TSPAN14, TWF2, UBE1DC1, UBE2J1, UCHL5, UNC50, USP39, UTP11L, VPS36, WDR37, WDR50, WDR91, WSB1, YARS2, YIPF3, YPEL5, ZC2HC1A, ZC3H13, ZDHHC9, ZMYND12, ZMYND15, ZRANB3
Identification of novel human genes evolutionarily conserved in Caenorhabditis elegans by comparative proteomics.
Lai CH, Chou CY, Ch'ang LY, Liu CS, Lin W.
Genome Res 10(5):703-13. 2000
35STMN1, STMN2, STMN3, STMN4
The stathmin phosphoprotein family: intracellular localization and effects on the microtubule network.
Gavet O, Ozon S, Manceau V, Lawler S, Curmi P, Sobel A.
J Cell Sci 111 ( Pt 22):3333-46. 1998
36STMN2
Purification, characterization, and in vitro phosphorylation of the neuron-specific membrane-associated protein SCG10.
Antonsson B, Lütjens R, Di Paolo G, Kassel D, Allet B, Bernard A, Catsicas S, Grenningloh G.
Protein Expr Purif. 9(3):363-71. 1997
37STMN2
SCG10, a neuron-specific growth-associated protein in Alzheimer's disease.
Okazaki T, Wang H, Masliah E, Cao M, Johnson SA, Sundsmo M, Saitoh T, Mori N.
Neurobiol Aging 16(6):883-94. 1995