Tetraspanins
"Tetraspanins" is a descriptor in the National Library of Medicine's controlled vocabulary thesaurus,
MeSH (Medical Subject Headings). Descriptors are arranged in a hierarchical structure,
which enables searching at various levels of specificity.
A large superfamily of cell surface membrane proteins characterized by their four transmembrane domains. They play a role in a variety of processes such as cellular adhesion and motility. They may be involved in the organization of cell surface MEMBRANE MICRODOMAINS that regulate the activation of LEUKOCYTES.
Descriptor ID |
D059470
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MeSH Number(s) |
D12.776.543.900
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Concept/Terms |
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Below are MeSH descriptors whose meaning is more general than "Tetraspanins".
Below are MeSH descriptors whose meaning is more specific than "Tetraspanins".
This graph shows the total number of publications written about "Tetraspanins" by people in this website by year, and whether "Tetraspanins" was a major or minor topic of these publications.
To see the data from this visualization as text, click here.
Year | Major Topic | Minor Topic | Total |
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2005 | 0 | 1 | 1 | 2008 | 0 | 1 | 1 | 2013 | 1 | 1 | 2 | 2014 | 1 | 0 | 1 | 2017 | 1 | 0 | 1 | 2019 | 1 | 0 | 1 | 2021 | 1 | 1 | 2 | 2024 | 0 | 1 | 1 |
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Below are the most recent publications written about "Tetraspanins" by people in Profiles.
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Scholz M, Horn K, Pott J, Wuttke M, K?hnapfel A, Nasr MK, Kirsten H, Li Y, Hoppmann A, Gorski M, Ghasemi S, Li M, Tin A, Chai JF, Cocca M, Wang J, Nutile T, Akiyama M, ?svold BO, Bansal N, Biggs ML, Boutin T, Brenner H, Brumpton B, Burkhardt R, Cai J, Campbell A, Campbell H, Chalmers J, Chasman DI, Chee ML, Chee ML, Chen X, Cheng CY, Cifkova R, Daviglus M, Delgado G, Dittrich K, Edwards TL, Endlich K, Michael Gaziano J, Giri A, Giulianini F, Gordon SD, Gudbjartsson DF, Hallan S, Hamet P, Hartman CA, Hayward C, Heid IM, Hellwege JN, Holleczek B, Holm H, Hutri-K?h?nen N, Hveem K, Isermann B, Jonas JB, Joshi PK, Kamatani Y, Kanai M, Kastarinen M, Khor CC, Kiess W, Kleber ME, K?rner A, Kovacs P, Krajcoviechova A, Kramer H, Kr?mer BK, Kuokkanen M, K?h?nen M, Lange LA, Lash JP, Lehtim?ki T, Li H, Lin BM, Liu J, Loeffler M, Lyytik?inen LP, Magnusson PKE, Martin NG, Matsuda K, Milaneschi Y, Mishra PP, Mononen N, Montgomery GW, Mook-Kanamori DO, Mychaleckyj JC, M?rz W, Nauck M, Nikus K, Nolte IM, Noordam R, Okada Y, Olafsson I, Oldehinkel AJ, Penninx BWJH, Perola M, Pirastu N, Polasek O, Porteous DJ, Poulain T, Psaty BM, Rabelink TJ, Raffield LM, Raitakari OT, Rasheed H, Reilly DF, Rice KM, Richmond A, Ridker PM, Rotter JI, Rudan I, Sabanayagam C, Salomaa V, Schneiderman N, Sch?ttker B, Sims M, Snieder H, Stark KJ, Stefansson K, Stocker H, Stumvoll M, Sulem P, Sveinbjornsson G, Svensson PO, Tai ES, Taylor KD, Tayo BO, Teren A, Tham YC, Thiery J, Thio CHL, Thomas LF, Tremblay J, T?njes A, van der Most PJ, Vitart V, V?lker U, Wang YX, Wang C, Wei WB, Whitfield JB, Wild SH, Wilson JF, Winkler TW, Wong TY, Woodward M, Sim X, Chu AY, Feitosa MF, Thorsteinsdottir U, Hung AM, Teumer A, Franceschini N, Parsa A, K?ttgen A, Schlosser P, Pattaro C. X-chromosome and kidney function: evidence from a multi-trait genetic analysis of 908,697 individuals reveals sex-specific and sex-differential findings in genes regulated by androgen response elements. Nat Commun. 2024 Jan 18; 15(1):586.
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Morgan CP, Meadows VE, Marx-Rattner R, Cisse YM, Bale TL. HA-tag CD63 is a novel conditional transgenic approach to track extracellular vesicle interactions with sperm and their transfer at conception. Sci Rep. 2023 01 13; 13(1):707.
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Rather HA, Mishra S, Su Y, Kumar A, Singh S, Misra BB, Lee J, Furdui CM, Hamilton LR, Gould RW, Nader SH, Nader MA, Deep G. Mass Spectrometry-Based Proteome Profiling of Extracellular Vesicles Derived from the Cerebrospinal Fluid of Adult Rhesus Monkeys Exposed to Cocaine throughout Gestation. Biomolecules. 2022 03 28; 12(4).
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Shoda T, Wen T, Caldwell JM, Ben-Baruch Morgenstern N, Osswald GA, Rochman M, Mack LE, Felton JM, Abonia JP, Arva NC, Atkins D, Bonis PA, Capocelli KE, Collins MH, Dellon ES, Falk GW, Gonsalves N, Gupta SK, Hirano I, Leung J, Menard-Katcher PA, Mukkada VA, Putnam PE, Rudman Spergel AK, Spergel JM, Wechsler JB, Yang GY, Aceves SS, Furuta GT, Rothenberg ME. Loss of Endothelial TSPAN12 Promotes Fibrostenotic Eosinophilic Esophagitis via Endothelial Cell-Fibroblast Crosstalk. Gastroenterology. 2022 02; 162(2):439-453.
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Elhusseiny AM, Jabroun M, Rajabi F, Gonzalez E, Alkharashi M. A novel variant in the TSPAN12 gene-presenting as unilateral myopia, pediatric cataract, and heterochromia in a patient with familial exudative vitreoretinopathy. Eur J Ophthalmol. 2022 Nov; 32(6):NP6-NP9.
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Mesner LD, Calabrese GM, Al-Barghouthi B, Gatti DM, Sundberg JP, Churchill GA, Godfrey DA, Ackert-Bicknell CL, Farber CR. Mouse genome-wide association and systems genetics identifies Lhfp as a regulator of bone mass. PLoS Genet. 2019 05; 15(5):e1008123.
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El Kharbili M, Aga?sse G, Barbollat-Boutrand L, Pommier RM, de la Fouchardi?re A, Larue L, Caramel J, Puisieux A, Berthier-Vergnes O, Masse I. Tspan8-?-catenin positive feedback loop promotes melanoma invasion. Oncogene. 2019 05; 38(20):3781-3793.
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Wang Y, Cho C, Williams J, Smallwood PM, Zhang C, Junge HJ, Nathans J. Interplay of the Norrin and Wnt7a/Wnt7b signaling systems in blood-brain barrier and blood-retina barrier development and maintenance. Proc Natl Acad Sci U S A. 2018 12 11; 115(50):E11827-E11836.
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Zhang C, Lai MB, Pedler MG, Johnson V, Adams RH, Petrash JM, Chen Z, Junge HJ. Endothelial Cell-Specific Inactivation of TSPAN12 (Tetraspanin 12) Reveals Pathological Consequences of Barrier Defects in an Otherwise Intact Vasculature. Arterioscler Thromb Vasc Biol. 2018 11; 38(11):2691-2705.
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Lai MB, Zhang C, Shi J, Johnson V, Khandan L, McVey J, Klymkowsky MW, Chen Z, Junge HJ. TSPAN12 Is a Norrin Co-receptor that Amplifies Frizzled4 Ligand Selectivity and Signaling. Cell Rep. 2017 06 27; 19(13):2809-2822.
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