Citations for
1FBXW11, NDEDJ
De Novo Missense Variants in FBXW11 Cause Diverse Developmental Phenotypes Including Brain, Eye, and Digit Anomalies.
Holt RJ, Young RM, Crespo B, Ceroni F, Curry CJ, Bellacchio E, Bax DA, Ciolfi A, Simon M, Fagerberg CR, van Binsbergen E, De Luca A, Memo L, Dobyns WB, Mohammed AA, Clokie SJH, Zazo Seco C, Jiang YH, Sørensen KP, Andersen H, Sullivan J, Powis Z, Chassevent A, Smith-Hicks C, Petrovski S, Antoniadi T, Shashi V, Gelb BD, Wilson SW, Gerrelli D, Tartaglia M, Chassaing N, Calvas P, Ragge NK.
Am J Hum Genet 105(3):640-657. doi: 10.1016/j.ajhg.2019.07.005. Epub 2019 Aug 8. 2019
2FBXW11
The ubiquitin ligase subunit β-TrCP in Sertoli cells is essential for spermatogenesis in mice.
Morohoshi A, Nakagawa T, Nakano S, Nagasawa Y, Nakayama K.
Dev Biol 445(2):178-188. doi: 10.1016/j.ydbio.2018.10.023. Epub 2018 Nov 2. 2019
3FBXW11
Fbxw11 promotes the proliferation of lymphocytic leukemia cells through the concomitant activation of NF-κB and β-catenin/TCF signaling pathways.
Wang L, Feng W, Yang X, Yang F, Wang R, Ren Q, Zhu X, Zheng G.
Cell Death Dis 9(4):427. doi: 10.1038/s41419-018-0440-1. 2018
4BTRC, FBXW11, MAP3K5
β-TrCP-dependent degradation of ASK1 suppresses the induction of the apoptotic response by oxidative stress.
Cheng R, Takeda K, Naguro I, Hatta T, Iemura SI, Natsume T, Ichijo H, Hattori K.
Biochim Biophys Acta Gen Subj 1862(10):2271-2280. doi: 10.1016/j.bbagen.2018.07.015. Epub 2018 Jul 18. 2018
5BTRC, DMRT1, FBXW11
Regulation of mitosis-meiosis transition by the ubiquitin ligase β-TrCP in male germ cells.
Nakagawa T, Zhang T, Kushi R, Nakano S, Endo T, Nakagawa M, Yanagihara N, Zarkower D, Nakayama K.
Development 144(22):4137-4147. doi: 10.1242/dev.158485. Epub 2017 Oct 5. 2017
6CDKN2A, FBXW11
S6 Kinase- and β-TrCP2-Dependent Degradation of p19Arf Is Required for Cell Proliferation.
Nakagawa T, Araki T, Nakagawa M, Hirao A, Unno M, Nakayama K.
Mol Cell Biol 35(20):3517-27. doi: 10.1128/MCB.00343-15. Epub 2015 Aug 3. 2015
7FBXW11, RAPGEF2
Substrate trapping proteomics reveals targets of the βTrCP2/FBXW11 ubiquitin ligase.
Kim TY, Siesser PF, Rossman KL, Goldfarb D, Mackinnon K, Yan F, Yi X, MacCoss MJ, Moon RT, Der CJ, Major MB.
Mol Cell Biol 35(1):167-81. doi: 10.1128/MCB.00857-14. Epub 2014 Oct 20. 2015
8BTRC, FBXW11
Role of β-TrCP ubiquitin ligase receptor in UVB mediated responses in skin.
Bhatia N, Demmer TA, Sharma AK, Elcheva I, Spiegelman VS.
Arch Biochem Biophys 508(2):178-84. Epub 2010 Dec 25. 2011
9BTRC, FBXW11
Specificity, location and function of βTrCP isoforms and their splice variants.
Putters J, Slotman JA, Gerlach JP, Strous GJ.
Cell Signal 23(4):641-7. Epub 2010 Dec 5. 2011
10BTRC, FBXW11, USP47
The ubiquitin-specific protease USP47 is a novel beta-TRCP interactor regulating cell survival.
Peschiaroli A, Skaar JR, Pagano M, Melino G.
Oncogene 29(9):1384-93. Epub 2009 Dec 7. 2010
11BTRC, FBXW11
The role of {beta}-TrCP1 and {beta}-TrCP2 in circadian rhythm generation by mediating degradation of clock protein PER2.
Ohsaki K, Oishi K, Kozono Y, Nakayama K, Nakayama KI, Ishida N.
J Biochem 144(5):609-18. Epub 2008 Sep 8. 2008
12BTRC, FBXW11
Silencing of both beta-TrCP1 and HOS (beta-TrCP2) is required to suppress human immunodeficiency virus type 1 Vpu-mediated CD4 down-modulation.
Butticaz C, Michielin O, Wyniger J, Telenti A, Rothenberger S.
J Virol 81(3):1502-5. Epub 2006 Nov 22. 2007
13DUP5Q35,FBXW11, DUP5QD
Holoprosencephaly and preaxial polydactyly associated with a 1.24 Mb duplication encompassing FBXW11 at 5q35.1.
Koolen DA, Herbergs J, Veltman JA, Pfundt R, van Bokhoven H, Stroink H, Sistermans EA, Brunner HG, Geurts van Kessel A, de Vries BB.
J Hum Genet 51(8):721-6. Epub 2006 Jul 25. 2006
14BTRC, FBXW11
SAG/ROC-SCF beta-TrCP E3 ubiquitin ligase promotes pro-caspase-3 degradation as a mechanism of apoptosis protection.
Tan M, Gallegos JR, Gu Q, Huang Y, Li J, Jin Y, Lu H, Sun Y.
Neoplasia 8(12):1042-54. 2006
15BTRC, FBXW11
Expression profiles of betaTRCP1 and betaTRCP2, and mutation analysis of betaTRCP2 in gastric cancer.
Saitoh T, Katoh M.
Int J Oncol 18(5):959-64. 2001
16FBXW11
Molecular cloning and genomic structure of the betaTRCP2 gene on chromosome 5q35.1.
Koike J, Sagara N, Kirikoshi H, Takagi A, Miwa T, Hirai M, Katoh M.
Biochem Biophys Res Commun 269(1):103-9. 2000
17BTRC, FBXL2, FBXO16, FBXW5, FBXL3, FBXL21, FBXL4, FBXL5, FBXL6, FBXL7, LRRC29, FBXO10, FBXO11, LMO7, FBXO21, FBXO22, FBXO24, FBXO25, FBXO3, FBXO4, FBXO5, FBXO6, FBXO7, FBXO8, FBXO9, FBXW11, SHFM3P1, FBXW8
Identification of a family of human F-box proteins.
Cenciarelli C, Chiaur DS, Guardavaccaro D, Parks W, Vidal M, Pagano M.
Curr Biol 9(20):1177-9. 1999
18AATK, ACIN1, ACOT11, ACSBG1, ADAMTS4, ADGRV1, AKAP11, ANKLE2, ARHGAP26, ARHGEF2, ASTN2, ATP2C2, ATP9A, BICD2, BZRAP1, CAND2, CEP135, CLASP1, CLASP2, CLUAP1, CLUH, CNOT3, COBL, CPNE3, CRTC1, CRY2, CSTF2T, CUL3, CUL4B, DAAM1, DAGLA, DEPDC5, DNAJC13, DOCK10, DZIP3, FBXW11, FKBP15, G3BP2, HECTD4, HEPH, HIP1R, HIPK1, ICOSLG, KIAA0649, KIAA0652, KIF13B, KIF1C, KIF21A, L3MBTL1, LDB3, MAGI2, MAP4K4, MFAP3L, MGEA5, MRC2, MTMR4, N4BP1, NPHP4, OBSL1, PAN2, PHACTR2, PHF2, PHLDB1, PLXND1, PPFIA3, PTCD1, RAB11FIP3, RBM19, RICH2, RNF40, RNF8, ROCK2, RRP12, SAPS2, SETX, SIN3B, SLC24A1, SMCHD1, SNAP91, SOCS5, SS18L1, SWAP70, TBC1D9B, TELO2, TNRC15, TSC22D2, UBE4B, UHRF1BP1L, ULK2, ZBED4, ZC3H11A, ZNF623
Prediction of the coding sequences of unidentified human genes. X. The complete sequences of 100 new cDNA clones from brain which can code for large proteins in vitro.
Ishikawa K, Nagase T, Suyama M, Miyajima N, Tanaka A, Kotani H, Nomura N,Ohara O.
DNA Res 5(3):169-76. 1998