Klrk1 Publications

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Feng J, et al.
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Feng J, Call ME, Wucherpfennig KW
(2006) The assembly of diverse immune receptors is focused on a polar membrane-embedded interaction site. PLoS Biol. 4(5):e142
Guerra N, et al.
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Guerra N, Tan YX, Joncker NT, Choy A, Gallardo F, Xiong N, Knoblaugh S, Cado D, Greenberg NM, Greenberg NR, Raulet DH
(2008) NKG2D-deficient mice are defective in tumor surveillance in models of spontaneous malignancy. Immunity 28(4):571-80
NK
Horng T, et al.
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Horng T, Bezbradica JS, Medzhitov R
(2007) NKG2D signaling is coupled to the interleukin 15 receptor signaling pathway. Nat. Immunol. 8(12):1345-52
Ogasawara K, et al.
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Ogasawara K, Benjamin J, Takaki R, Phillips JH, Lanier LL
(2005) Function of NKG2D in natural killer cell-mediated rejection of mouse bone marrow grafts. Nat. Immunol. 6(9):938-45
NK
Zhou R, et al.
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Zhou R, Wei H, Sun R, Zhang J, Tian Z
(2007) NKG2D recognition mediates Toll-like receptor 3 signaling-induced breakdown of epithelial homeostasis in the small intestines of mice. Proc. Natl. Acad. Sci. U.S.A. 104(18):7512-5
NK
Savithri B, et al.
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Savithri B, Khar A
(2006) A transmembrane-anchored rat RAE-1-like transcript as a ligand for NKR-P2, the rat ortholog of human and mouse NKG2D. Eur. J. Immunol. 36(1):107-17
NK
Markiewicz MA, et al.
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Markiewicz MA, Carayannopoulos LN, Naidenko OV, Matsui K, Burack WR, Wise EL, Fremont DH, Allen PM, Yokoyama WM, Colonna M, Shaw AS
(2005) Costimulation through NKG2D enhances murine CD8+ CTL function: similarities and differences between NKG2D and CD28 costimulation. J. Immunol. 175(5):2825-33
Xie X, et al.
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Xie X, He H, Colonna M, Seya T, Takai T, Croy BA
(2005) Pathways participating in activation of mouse uterine natural killer cells during pregnancy. Biol. Reprod. 73(3):510-8
NK
Koike J, et al.
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Koike J, Wakao H, Ishizuka Y, Sato TA, Hamaoki M, Seino K, Koseki H, Nakayama T, Taniguchi M
(2004) Bone marrow allograft rejection mediated by a novel murine NK receptor, NKG2I. J. Exp. Med. 199(1):137-44
NK
Coudert JD, et al.
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Coudert JD, Scarpellino L, Gros F, Vivier E, Held W
(2008) Sustained NKG2D engagement induces cross-tolerance of multiple distinct NK cell activation pathways. Blood 111(7):3571-8
NK
Takada A, et al.
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Takada A, Yoshida S, Kajikawa M, Miyatake Y, Tomaru U, Sakai M, Chiba H, Maenaka K, Kohda D, Fugo K, Kasahara M
(2008) Two novel NKG2D ligands of the mouse H60 family with differential expression patterns and binding affinities to NKG2D. J. Immunol. 180(3):1678-85
Campbell JA, et al.
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Campbell JA, Trossman DS, Yokoyama WM, Carayannopoulos LN
(2007) Zoonotic orthopoxviruses encode a high-affinity antagonist of NKG2D. J. Exp. Med. 204(6):1311-7
Rausch A, et al.
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Rausch A, Hessmann M, Hölscher A, Schreiber T, Bulfone-Paus S, Ehlers S, Hölscher C
(2006) Interleukin-15 mediates protection against experimental tuberculosis: a role for NKG2D-dependent effector mechanisms of CD8+ T cells. Eur. J. Immunol. 36(5):1156-67
Coudert JD, et al.
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Coudert JD, Held W
(2006) The role of the NKG2D receptor for tumor immunity. Semin. Cancer Biol. 16(5):333-43
NK
Marie JC, et al.
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Marie JC, Liggitt D, Rudensky AY
(2006) Cellular mechanisms of fatal early-onset autoimmunity in mice with the T cell-specific targeting of transforming growth factor-beta receptor. Immunity 25(3):441-54
Rabinovich B, et al.
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Rabinovich B, Li J, Wolfson M, Lawrence W, Beers C, Chalupny J, Hurren R, Greenfield B, Miller R, Cosman D
(2006) NKG2D splice variants: a reexamination of adaptor molecule associations. Immunogenetics 58(2-3):81-8
Wiemann K, et al.
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Wiemann K, Mittrücker HW, Feger U, Welte SA, Yokoyama WM, Spies T, Rammensee HG, Steinle A
(2005) Systemic NKG2D down-regulation impairs NK and CD8 T cell responses in vivo. J. Immunol. 175(2):720-9
Oppenheim DE, et al.
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Oppenheim DE, Roberts SJ, Clarke SL, Filler R, Lewis JM, Tigelaar RE, Girardi M, Hayday AC
(2005) Sustained localized expression of ligand for the activating NKG2D receptor impairs natural cytotoxicity in vivo and reduces tumor immunosurveillance. Nat. Immunol. 6(9):928-37
Dwyer-Nield LD, et al.
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Dwyer-Nield LD, Srebernak MC, Barrett BS, Ahn J, Cosper P, Meyer AM, Kisley LR, Bauer AK, Thompson DC, Malkinson AM
(2005) Cytokines differentially regulate the synthesis of prostanoid and nitric oxide mediators in tumorigenic versus non-tumorigenic mouse lung epithelial cell lines. Carcinogenesis 26(7):1196-206
Regunathan J, et al.
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Regunathan J, Chen Y, Wang D, Malarkannan S
(2005) NKG2D receptor-mediated NK cell function is regulated by inhibitory Ly49 receptors. Blood 105(1):233-40
NK
Han Y, et al.
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Han Y, Zhang M, Li N, Chen T, Zhang Y, Wan T, Cao X
(2004) KLRL1, a novel killer cell lectinlike receptor, inhibits natural killer cell cytotoxicity. Blood 104(9):2858-66
NK
Hamerman JA, et al.
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Hamerman JA, Ogasawara K, Lanier LL
(2004) Cutting edge: Toll-like receptor signaling in macrophages induces ligands for the NKG2D receptor. J. Immunol. 172(4):2001-5
NK
Raulet DH
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Raulet DH
(2003) Roles of the NKG2D immunoreceptor and its ligands. Nat. Rev. Immunol. 3(10):781-90
Diefenbach A, et al.
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Diefenbach A, Hsia JK, Hsiung MY, Raulet DH
(2003) A novel ligand for the NKG2D receptor activates NK cells and macrophages and induces tumor immunity. Eur. J. Immunol. 33(2):381-91
NK, T And/Or B Cell Function
Gilfillan S, et al.
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Gilfillan S, Ho EL, Cella M, Yokoyama WM, Colonna M
(2002) NKG2D recruits two distinct adapters to trigger NK cell activation and costimulation. Nat. Immunol. 3(12):1150-5
NK
Jamieson AM, et al.
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Jamieson AM, Diefenbach A, McMahon CW, Xiong N, Carlyle JR, Raulet DH
(2002) The role of the NKG2D immunoreceptor in immune cell activation and natural killing. Immunity 17(1):19-29
NK, T And/Or B Cell Function
Vance RE, et al.
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Vance RE, Jamieson AM, Raulet DH
(1999) Recognition of the class Ib molecule Qa-1(b) by putative activating receptors CD94/NKG2C and CD94/NKG2E on mouse natural killer cells. J. Exp. Med. 190(12):1801-12
NK
Depatie C, et al.
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Depatie C, Lee SH, Stafford A, Avner P, Belouchi A, Gros P, Vidal SM
(2000) Sequence-ready BAC contig, physical, and transcriptional map of a 2-Mb region overlapping the mouse chromosome 6 host-resistance locus Cmv1. Genomics 66(2):161-74
Depatie C, et al.
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Depatie C, Chalifour A, Paré C, Lee SH, Vidal SM, Lemieux S
(1999) Assessment of Cmv1 candidates by genetic mapping and in vivo antibody depletion of NK cell subsets. Int. Immunol. 11(9):1541-51
Brown MG, et al.
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Brown MG, Zhang J, Du Y, Stoll J, Yokoyama WM, Scalzo AA
(1999) Localization on a physical map of the NKC-linked Cmv1 locus between Ly49b and the Prp gene cluster on mouse chromosome 6. J. Immunol. 163(4):1991-9
Ho EL, et al.
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Ho EL, Heusel JW, Brown MG, Matsumoto K, Scalzo AA, Yokoyama WM
(1998) Murine Nkg2d and Cd94 are clustered within the natural killer complex and are expressed independently in natural killer cells. Proc. Natl. Acad. Sci. U.S.A. 95(11):6320-5
Vance RE, et al.
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Vance RE, Tanamachi DM, Hanke T, Raulet DH
(1997) Cloning of a mouse homolog of CD94 extends the family of C-type lectins on murine natural killer cells. Eur. J. Immunol. 27(12):3236-41
Carninci P, et al.
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Carninci P, Kasukawa T, Katayama S, Gough J, Frith MC, Maeda N, Oyama R, Ravasi T, Lenhard B, Wells C, Kodzius R, Shimokawa K, Bajic VB, Brenner SE, Batalov S, Forrest AR, Zavolan M, Davis MJ, Wilming LG, Aidinis V, Allen JE, Ambesi-Impiombato A, Apweiler R, Aturaliya RN, Bailey TL, Bansal M, Baxter L, Beisel KW, Bersano T, Bono H, Chalk AM, Chiu KP, Choudhary V, Christoffels A, Clutterbuck DR, Crowe ML, Dalla E, Dalrymple BP, de Bono B, Della Gatta G, di Bernardo D, Down T, Engstrom P, Fagiolini M, Faulkner G, Fletcher CF, Fukushima T, Furuno M, Futaki S, Gariboldi M, Georgii-Hemming P, Gingeras TR, Gojobori T, Green RE, Gustincich S, Harbers M, Hayashi Y, Hensch TK, Hirokawa N, Hill D, Huminiecki L, Iacono M, Ikeo K, Iwama A, Ishikawa T, Jakt M, Kanapin A, Katoh M, Kawasawa Y, Kelso J, Kitamura H, Kitano H, Kollias G, Krishnan SP, Kruger A, Kummerfeld SK, Kurochkin IV, Lareau LF, Lazarevic D, Lipovich L, Liu J, Liuni S, McWilliam S, Madan Babu M, Madera M, Marchionni L, Matsuda H, Matsuzawa S, Miki H, Mignone F, Miyake S, Morris K, Mottagui-Tabar S, Mulder N, Nakano N, Nakauchi H, Ng P, Nilsson R, Nishiguchi S, Nishikawa S, Nori F, Ohara O, Okazaki Y, Orlando V, Pang KC, Pavan WJ, Pavesi G, Pesole G, Petrovsky N, Piazza S, Reed J, Reid JF, Ring BZ, Ringwald M, Rost B, Ruan Y, Salzberg SL, Sandelin A, Schneider C, Schönbach C, Sekiguchi K, Semple CA, Seno S, Sessa L, Sheng Y, Shibata Y, Shimada H, Shimada K, Silva D, Sinclair B, Sperling S, Stupka E, Sugiura K, Sultana R, Takenaka Y, Taki K, Tammoja K, Tan SL, Tang S, Taylor MS, Tegner J, Teichmann SA, Ueda HR, van Nimwegen E, Verardo R, Wei CL, Yagi K, Yamanishi H, Zabarovsky E, Zhu S, Zimmer A, Hide W, Bult C, Grimmond SM, Teasdale RD, Liu ET, Brusic V, Quackenbush J, Wahlestedt C, Mattick JS, Hume DA, Kai C, Sasaki D, Tomaru Y, Fukuda S, Kanamori-Katayama M, Suzuki M, Aoki J, Arakawa T, Iida J, Imamura K, Itoh M, Kato T, Kawaji H, Kawagashira N, Kawashima T, Kojima M, Kondo S, Konno H, Nakano K, Ninomiya N, Nishio T, Okada M, Plessy C, Shibata K, Shiraki T, Suzuki S, Tagami M, Waki K, Watahiki A, Okamura-Oho Y, Suzuki H, Kawai J, Hayashizaki Y, ,
(2005) The transcriptional landscape of the mammalian genome. Science 309(5740):1559-63