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1 to 24 of 24  Show
  1. 1
    "Generation and annotation of the DNA sequences of human chromosomes 2 and 4."
    Hillier L.W., Graves T.A., Fulton R.S., Fulton L.A., Pepin K.H., Minx P., Wagner-McPherson C., Layman D., Wylie K., Sekhon M., Becker M.C., Fewell G.A., Delehaunty K.D., Miner T.L., Nash W.E., Kremitzki C., Oddy L., Du H.
    , Sun H., Bradshaw-Cordum H., Ali J., Carter J., Cordes M., Harris A., Isak A., van Brunt A., Nguyen C., Du F., Courtney L., Kalicki J., Ozersky P., Abbott S., Armstrong J., Belter E.A., Caruso L., Cedroni M., Cotton M., Davidson T., Desai A., Elliott G., Erb T., Fronick C., Gaige T., Haakenson W., Haglund K., Holmes A., Harkins R., Kim K., Kruchowski S.S., Strong C.M., Grewal N., Goyea E., Hou S., Levy A., Martinka S., Mead K., McLellan M.D., Meyer R., Randall-Maher J., Tomlinson C., Dauphin-Kohlberg S., Kozlowicz-Reilly A., Shah N., Swearengen-Shahid S., Snider J., Strong J.T., Thompson J., Yoakum M., Leonard S., Pearman C., Trani L., Radionenko M., Waligorski J.E., Wang C., Rock S.M., Tin-Wollam A.-M., Maupin R., Latreille P., Wendl M.C., Yang S.-P., Pohl C., Wallis J.W., Spieth J., Bieri T.A., Berkowicz N., Nelson J.O., Osborne J., Ding L., Meyer R., Sabo A., Shotland Y., Sinha P., Wohldmann P.E., Cook L.L., Hickenbotham M.T., Eldred J., Williams D., Jones T.A., She X., Ciccarelli F.D., Izaurralde E., Taylor J., Schmutz J., Myers R.M., Cox D.R., Huang X., McPherson J.D., Mardis E.R., Clifton S.W., Warren W.C., Chinwalla A.T., Eddy S.R., Marra M.A., Ovcharenko I., Furey T.S., Miller W., Eichler E.E., Bork P., Suyama M., Torrents D., Waterston R.H., Wilson R.K.
    Nature 434:724-731(2005) [PubMed] [Europe PMC] [Abstract]
    Cited for: NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
    Category: Sequences.
    Source: UniProtKB/TrEMBL (unreviewed).

    This publication is cited by 36329 other entries.

  2. 2
    "The finished DNA sequence of human chromosome 12."
    Baylor College of Medicine Human Genome Sequencing Center Sequence Production Team
    Scherer S.E., Muzny D.M., Buhay C.J., Chen R., Cree A., Ding Y., Dugan-Rocha S., Gill R., Gunaratne P., Harris R.A., Hawes A.C., Hernandez J., Hodgson A.V., Hume J., Jackson A., Khan Z.M., Kovar-Smith C., Lewis L.R.
    , Lozado R.J., Metzker M.L., Milosavljevic A., Miner G.R., Montgomery K.T., Morgan M.B., Nazareth L.V., Scott G., Sodergren E., Song X.Z., Steffen D., Lovering R.C., Wheeler D.A., Worley K.C., Yuan Y., Zhang Z., Adams C.Q., Ansari-Lari M.A., Ayele M., Brown M.J., Chen G., Chen Z., Clerc-Blankenburg K.P., Davis C., Delgado O., Dinh H.H., Draper H., Gonzalez-Garay M.L., Havlak P., Jackson L.R., Jacob L.S., Kelly S.H., Li L., Li Z., Liu J., Liu W., Lu J., Maheshwari M., Nguyen B.V., Okwuonu G.O., Pasternak S., Perez L.M., Plopper F.J., Santibanez J., Shen H., Tabor P.E., Verduzco D., Waldron L., Wang Q., Williams G.A., Zhang J., Zhou J., Allen C.C., Amin A.G., Anyalebechi V., Bailey M., Barbaria J.A., Bimage K.E., Bryant N.P., Burch P.E., Burkett C.E., Burrell K.L., Calderon E., Cardenas V., Carter K., Casias K., Cavazos I., Cavazos S.R., Ceasar H., Chacko J., Chan S.N., Chavez D., Christopoulos C., Chu J., Cockrell R., Cox C.D., Dang M., Dathorne S.R., David R., Davis C.M., Davy-Carroll L., Deshazo D.R., Donlin J.E., D'Souza L., Eaves K.A., Egan A., Emery-Cohen A.J., Escotto M., Flagg N., Forbes L.D., Gabisi A.M., Garza M., Hamilton C., Henderson N., Hernandez O., Hines S., Hogues M.E., Huang M., Idlebird D.G., Johnson R., Jolivet A., Jones S., Kagan R., King L.M., Leal B., Lebow H., Lee S., LeVan J.M., Lewis L.C., London P., Lorensuhewa L.M., Loulseged H., Lovett D.A., Lucier A., Lucier R.L., Ma J., Madu R.C., Mapua P., Martindale A.D., Martinez E., Massey E., Mawhiney S., Meador M.G., Mendez S., Mercado C., Mercado I.C., Merritt C.E., Miner Z.L., Minja E., Mitchell T., Mohabbat F., Mohabbat K., Montgomery B., Moore N., Morris S., Munidasa M., Ngo R.N., Nguyen N.B., Nickerson E., Nwaokelemeh O.O., Nwokenkwo S., Obregon M., Oguh M., Oragunye N., Oviedo R.J., Parish B.J., Parker D.N., Parrish J., Parks K.L., Paul H.A., Payton B.A., Perez A., Perrin W., Pickens A., Primus E.L., Pu L.L., Puazo M., Quiles M.M., Quiroz J.B., Rabata D., Reeves K., Ruiz S.J., Shao H., Sisson I., Sonaike T., Sorelle R.P., Sutton A.E., Svatek A.F., Svetz L.A., Tamerisa K.S., Taylor T.R., Teague B., Thomas N., Thorn R.D., Trejos Z.Y., Trevino B.K., Ukegbu O.N., Urban J.B., Vasquez L.I., Vera V.A., Villasana D.M., Wang L., Ward-Moore S., Warren J.T., Wei X., White F., Williamson A.L., Wleczyk R., Wooden H.S., Wooden S.H., Yen J., Yoon L., Yoon V., Zorrilla S.E., Nelson D., Kucherlapati R., Weinstock G., Gibbs R.A., null.
    Nature 440:346-351(2006) [PubMed] [Europe PMC] [Abstract]
    Cited for: NUCLEOTIDE SEQUENCE [LARGE SCALE GENOMIC DNA].
    Category: Sequences.
    Source: UniProtKB/TrEMBL (unreviewed).

    This publication is cited by 3861 other entries.

  3. 3
    Ensembl
    Submitted (JUL-2011) to UniProtKB
    Cited for: IDENTIFICATION.
    Source: UniProtKB/TrEMBL (unreviewed).
  4. 4
    "Human and mouse macrophage-inducible C-type lectin (Mincle) bind Candida albicans."
    Bugarcic A., Hitchens K., Beckhouse A.G., Wells C.A., Ashman R.B., Blanchard H.
    Glycobiology 18:679-685(2008) [PubMed] [Europe PMC] [Abstract]
    Annotation: Several functional states mediating the interaction of Mincle and yeast at the surface of the macrophage.Imported.
    Source: GeneRIF:26253.

    This publication is cited by 1 other entry.

  5. 5
    "Crosstalk between components of the innate immune system: promoting anti-microbial defenses and avoiding immunopathologies."
    Crozat K., Vivier E., Dalod M.
    Immunol. Rev. 227:129-149(2009) [PubMed] [Europe PMC] [Abstract]
    Annotation: important for the initiation of an innate immune response to Candida albicansImported.
    Source: GeneRIF:26253.

    This publication is mapped to 31 other entries.

  6. 6
    "New genetic associations detected in a host response study to hepatitis B vaccine."
    Davila S., Froeling F.E., Tan A., Bonnard C., Boland G.J., Snippe H., Hibberd M.L., Seielstad M.
    Genes Immun. 11:232-238(2010) [PubMed] [Europe PMC] [Abstract]
    Annotation: Observational study of gene-disease association. (HuGE Navigator)Imported.
    Source: GeneRIF:26253.

    This publication is mapped to 17686 other entries.

  7. 7
    "Mast cells generated from patients with atopic eczema have enhanced levels of granule mediators and an impaired Dectin-1 expression."
    Ribbing C., Engblom C., Lappalainen J., Lindstedt K., Kovanen P.T., Karlsson M.A., Lundeberg L., Johansson C., Nilsson G., Lunderius-Andersson C., Scheynius A.
    Allergy 66:110-119(2011) [PubMed] [Europe PMC] [Abstract]
    Annotation: progenitor-derived mast cells expressed the macrophage-inducible C-type lectin receptor Mincle and exposure of these cells to M. sympodialis induced up-regulation of the mRNA expression of MincleImported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

  8. 8
    "Increased expression of macrophage-inducible C-type lectin in adipose tissue of obese mice and humans."
    Ichioka M., Suganami T., Tsuda N., Shirakawa I., Hirata Y., Satoh-Asahara N., Shimoda Y., Tanaka M., Kim-Saijo M., Miyamoto Y., Kamei Y., Sata M., Ogawa Y.
    Diabetes 60:819-826(2011) [PubMed] [Europe PMC] [Abstract]
    Annotation: Our data suggest that Mincle is induced in adipose tissue macrophages in obesity at least partly through the saturated fatty acid/TLR4/NF-kappaB pathway thereby suggesting its pathophysiologic role in obesity-induced adipose tissue inflammation.Imported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

  9. 9
    "Silencing of renal DNaseI in murine lupus nephritis imposes exposure of large chromatin fragments and activation of Toll like receptors and the Clec4e."
    Thiyagarajan D., Fismen S., Seredkina N., Jacobsen S., Elung-Jensen T., Kamper A.L., Fenton C.G., Rekvig O.P., Mortensen E.S.
    PLoS ONE 7:e34080-e34080(2012) [PubMed] [Europe PMC] [Abstract]
    Annotation: silencing of renal DNaseI gene expression initiates a cascade of inflammatory signals including activation of Toll like receptors and Clec4e leading to progression of both murine and human lupus nephritisImported.
    Source: GeneRIF:26253.

    This publication is mapped to 14 other entries.

  10. 10
    "Mincle polarizes human monocyte and neutrophil responses to Candida albicans."
    Vijayan D., Radford K.J., Beckhouse A.G., Ashman R.B., Wells C.A.
    Immunol. Cell Biol. 90:889-895(2012) [PubMed] [Europe PMC] [Abstract]
    Annotation: Data indicate an unusual pattern of reciprocal expression of Mincle on peripheral blood monocytes or neutrophils.Imported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

  11. 11
    "Mincle and human B cell function."
    Kawata K., Illarionov P., Yang G.X., Kenny T.P., Zhang W., Tsuda M., Ando Y., Leung P.S., Ansari A.A., Gershwin M.E.
    J. Autoimmun. 39:315-322(2012) [PubMed] [Europe PMC] [Abstract]
    Annotation: Mincle is a potentially critical player in human B cell responses.Imported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

  12. 12
    "Macrophage-inducible C-type lectin is associated with anti-cyclic citrullinated peptide antibodies-positive rheumatoid arthritis in men."
    Wu X.Y., Guo J.P., Yin F.R., Lu X.L., Li R., He J., Liu X., Li Z.G.
    Chin. Med. J. 125:3115-3119(2012) [PubMed] [Europe PMC] [Abstract]
    Annotation: Macrophage-inducible C-type lectin is associated with anti-cyclic citrullinated peptide antibodies-positive rheumatoid arthritis in men.Imported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

  13. 13
    "Structural analysis for glycolipid recognition by the C-type lectins Mincle and MCL."
    Furukawa A., Kamishikiryo J., Mori D., Toyonaga K., Okabe Y., Toji A., Kanda R., Miyake Y., Ose T., Yamasaki S., Maenaka K.
    Proc. Natl. Acad. Sci. U.S.A. 110:17438-17443(2013) [PubMed] [Europe PMC] [Abstract]
    Annotation: Results show the molecular mechanism of glycolipid recognition through C-type lectin receptors which may provide clues to rational design for effective adjuvants.Imported.
    Source: GeneRIF:26253.

    This publication is mapped to 2 other entries.

  14. 14
    "Fungal engagement of the C-type lectin mincle suppresses dectin-1-induced antifungal immunity."
    Wevers B.A., Kaptein T.M., Zijlstra-Willems E.M., Theelen B., Boekhout T., Geijtenbeek T.B., Gringhuis S.I.
    Cell Host Microbe 15:494-505(2014) [PubMed] [Europe PMC] [Abstract]
    Annotation: mincle is a fungal receptor that can suppress antifungal immunity and as such is a potential therapeutic target.Imported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

  15. 15
    "Glycerol monomycolate is a novel ligand for the human, but not mouse macrophage inducible C-type lectin, Mincle."
    Hattori Y., Morita D., Fujiwara N., Mori D., Nakamura T., Harashima H., Yamasaki S., Sugita M.
    J. Biol. Chem. 289:15405-15412(2014) [PubMed] [Europe PMC] [Abstract]
    Annotation: These results demonstrated that GroMM is a unique ligand for human Mincle that is not recognized by mouse Mincle.Imported.
    Source: GeneRIF:26253.

    This publication is mapped to 6 other entries.

  16. 16
    "Mincle signaling in the innate immune response after traumatic brain injury."
    de Rivero Vaccari J.C., Brand F.J., Berti A.F., Alonso O.F., Bullock M.R., de Rivero Vaccari J.P.
    J. Neurotrauma 32:228-236(2015) [PubMed] [Europe PMC] [Abstract]
    Annotation: our findings identify mincle as a contributor to the inflammatory response after traumatic brain injuryImported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

  17. 17
    "Contribution of MINCLE-SYK Signaling to Activation of Primary Human APCs by Mycobacterial Cord Factor and the Novel Adjuvant TDB."
    Ostrop J., Jozefowski K., Zimmermann S., Hofmann K., Strasser E., Lepenies B., Lang R.
    J. Immunol. 195:2417-2428(2015) [PubMed] [Europe PMC] [Abstract]
    Annotation: Data indicate that MINCLE receptor is able to mediate the response to trehalose-6 6-dimycolate (TDM) dependent on SYK kinase and CARD9 protein.Imported.
    Source: GeneRIF:26253.

    This publication is mapped to 13 other entries.

  18. 18
    "Human Mincle Binds to Cholesterol Crystals and Triggers Innate Immune Responses."
    Kiyotake R., Oh-Hora M., Ishikawa E., Miyamoto T., Ishibashi T., Yamasaki S.
    J. Biol. Chem. 290:25322-25332(2015) [PubMed] [Europe PMC] [Abstract]
    Annotation: results suggest that cholesterol crystals are an endogenous ligand for hMincle and that they activate innate immune responsesImported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

  19. 19
    "Induction of Mincle by Helicobacter pylori and consequent anti-inflammatory signaling denote a bacterial survival strategy."
    Devi S., Rajakumara E., Ahmed N.
    Sci Rep 5:15049-15049(2015) [PubMed] [Europe PMC] [Abstract]
    Annotation: Induction of Mincle by Helicobacter pylori and consequent anti-inflammatory signaling denote a bacterial survival strategy.Imported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

  20. 20
    "Necrotic Cell Sensor Clec4e Promotes a Proatherogenic Macrophage Phenotype Through Activation of the Unfolded Protein Response."
    Clement M., Basatemur G., Masters L., Baker L., Bruneval P., Iwawaki T., Kneilling M., Yamasaki S., Goodall J., Mallat Z.
    Circulation 134:1039-1051(2016) [PubMed] [Europe PMC] [Abstract]
    Annotation: a nonredundant role for Clec4e in coordinating major biological pathways involved in atherosclerosisImported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

  21. 21
    "Age-Specific Adjuvant Synergy: Dual TLR7/8 and Mincle Activation of Human Newborn Dendritic Cells Enables Th1 Polarization."
    van Haren S.D., Dowling D.J., Foppen W., Christensen D., Andersen P., Reed S.G., Hershberg R.M., Baden L.R., Levy O.
    J. Immunol. 197:4413-4424(2016) [PubMed] [Europe PMC] [Abstract]
    Annotation: combination adjuvant systems demonstrate markedly different immune activation with age with combined DC activation via Macrophage-inducible C-type lectin and TLR7/8 representing a novel approach to enhance the efficacy of early-life vaccines.Imported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

  22. 22
    "C-type Lectin Mincle Recognizes Glucosyl-diacylglycerol of Streptococcus pneumoniae and Plays a Protective Role in Pneumococcal Pneumonia."
    Behler-Janbeck F., Takano T., Maus R., Stolper J., Jonigk D., Tort Tarres M., Fuehner T., Prasse A., Welte T., Timmer M.S., Stocker B.L., Nakanishi Y., Miyamoto T., Yamasaki S., Maus U.A.
    PLoS Pathog. 12:e1006038-e1006038(2016) [PubMed] [Europe PMC] [Abstract]
    Annotation: We here show that Mincle gene expression was induced in alveolar macrophages and neutrophils in bronchoalveolar lavage fluids of mice and patients with pneumococcal pneumoniaImported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

  23. 23
    "Human gingiva transcriptome during wound healing."
    Wang Y., Tatakis D.N.
    J. Clin. Periodontol. 44:394-402(2017) [PubMed] [Europe PMC] [Abstract]
    Annotation: CLEC4E expression is significantly upregulated in human masticatory mucosa during wound healingImported.
    Source: GeneRIF:26253.

    This publication is mapped to 304 other entries.

  24. 24
    "The role of Mincle in innate immune to fungal keratitis."
    Zhao G., Xu Q., Lin J., Chen W., Cui T., Hu L., Jiang N.
    J Infect Dev Ctries 11:89-97(2017) [PubMed] [Europe PMC] [Abstract]
    Annotation: The expression of Mincle increases significantly during the early period of Aspergillus fumigatus infection while expression of eight corresponding cytokines changes. Mincle as a pattern recognition receptor may play a role in the early innate immune response of the corneal resistance against fungus.Imported.
    Source: GeneRIF:26253.

    This publication is mapped to 1 other entry.

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