Terms: = Germ cell tumor AND GATA2, NFE1B, 2624, ENSG00000179348, MGC2306, P23769
32 results:
1. Lineage specific transcription factor waves reprogram neuroblastoma from self-renewal to differentiation.
Banerjee D; Bagchi S; Liu Z; Chou HC; Xu M; Sun M; Aloisi S; Vaksman Z; Diskin SJ; Zimmerman M; Khan J; Gryder B; Thiele CJ
Nat Commun; 2024 Apr; 15(1):3432. PubMed ID: 38653778
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2. Therapeutic targeting of FUBP3 phase separation by gata2-AS1 inhibits malate-aspartate shuttle and neuroblastoma progression via modulating SUZ12 activity.
Wang X; Guo Y; Chen G; Fang E; Wang J; Li Q; Li D; Hu A; Bao B; Zhou Y; Gao H; Song J; Du X; Zheng L; Tong Q
Oncogene; 2023 Sep; 42(36):2673-2687. PubMed ID: 37537343
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3. Somatic mutational landscape of hereditary hematopoietic malignancies caused by germline variants in RUNX1, gata2, and DDX41.
Homan CC; Drazer MW; Yu K; Lawrence DM; Feng J; Arriola-Martinez L; Pozsgai MJ; McNeely KE; Ha T; Venugopal P; Arts P; King-Smith SL; Cheah J; Armstrong M; Wang P; Bödör C; Cantor AB; Cazzola M; Degelman E; DiNardo CD; Duployez N; Favier R; Fröhling S; Rio-Machin A; Klco JM; Krämer A; Kurokawa M; Lee J; Malcovati L; Morgan NV; Natsoulis G; Owen C; Patel KP; Preudhomme C; Raslova H; Rienhoff H; Ripperger T; Schulte R; Tawana K; Velloso E; Yan B; Kim E; Sood R; Hsu AP; Holland SM; Phillips K; Poplawski NK; Babic M; Wei AH; Forsyth C; Mar Fan H; Lewis ID; Cooney J; Susman R; Fox LC; Blombery P; Singhal D; Hiwase D; Phipson B; Schreiber AW; Hahn CN; Scott HS; Liu P; Godley LA; Brown AL;
Blood Adv; 2023 Oct; 7(20):6092-6107. PubMed ID: 37406166
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4. Overview of the 2022 WHO Classification of Pituitary Adenomas/Pituitary Neuroendocrine tumors: Clinical Practices, Controversies, and Perspectives.
Wan XY; Chen J; Wang JW; Liu YC; Shu K; Lei T
Curr Med Sci; 2022 Dec; 42(6):1111-1118. PubMed ID: 36544040
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5. NONO enhances mRNA processing of super-enhancer-associated gata2 and HAND2 genes in neuroblastoma.
Zhang S; Cooper JA; Chong YS; Naveed A; Mayoh C; Jayatilleke N; Liu T; Amos S; Kobelke S; Marshall AC; Meers O; Choi YS; Bond CS; Fox AH
EMBO Rep; 2023 Feb; 24(2):e54977. PubMed ID: 36416237
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6. Clinical evolution, genetic landscape and trajectories of clonal hematopoiesis in SAMD9/SAMD9L syndromes.
Sahoo SS; Pastor VB; Goodings C; Voss RK; Kozyra EJ; Szvetnik A; Noellke P; Dworzak M; Starý J; Locatelli F; Masetti R; Schmugge M; De Moerloose B; Catala A; Kállay K; Turkiewicz D; Hasle H; Buechner J; Jahnukainen K; Ussowicz M; Polychronopoulou S; Smith OP; Fabri O; Barzilai S; de Haas V; Baumann I; Schwarz-Furlan S; ; Niewisch MR; Sauer MG; Burkhardt B; Lang P; Bader P; Beier R; Müller I; Albert MH; Meisel R; Schulz A; Cario G; Panda PK; Wehrle J; Hirabayashi S; Derecka M; Durruthy-Durruthy R; Göhring G; Yoshimi-Noellke A; Ku M; Lebrecht D; Erlacher M; Flotho C; Strahm B; Niemeyer CM; Wlodarski MW
Nat Med; 2021 Oct; 27(10):1806-1817. PubMed ID: 34621053
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7. Assessing the Prognostic Significance of tumor-Infiltrating Lymphocytes in Patients With Melanoma Using Pathologic Features Identified by Natural Language Processing.
Yang J; Lian JW; Chin YH; Wang L; Lian A; Murphy GF; Zhou L
JAMA Netw Open; 2021 Sep; 4(9):e2126337. PubMed ID: 34550383
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8. Molecular alterations in retinoblastoma beyond RB1.
Mendonça V; Evangelista AC; P Matta B; M Moreira MÂ; Faria P; Lucena E; Seuánez HN
Exp Eye Res; 2021 Oct; 211():108753. PubMed ID: 34478740
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9. PATZ1 fusions define a novel molecularly distinct neuroepithelial tumor entity with a broad histological spectrum.
Alhalabi KT; Stichel D; Sievers P; Peterziel H; Sommerkamp AC; Sturm D; Wittmann A; Sill M; Jäger N; Beck P; Pajtler KW; Snuderl M; Jour G; Delorenzo M; Martin AM; Levy A; Dalvi N; Hansford JR; Gottardo NG; Uro-Coste E; Maurage CA; Godfraind C; Vandenbos F; Pietsch T; Kramm C; Filippidou M; Kattamis A; Jones C; Øra I; Mikkelsen TS; Zapotocky M; Sumerauer D; Scheie D; McCabe M; Wesseling P; Tops BBJ; Kranendonk MEG; Karajannis MA; Bouvier N; Papaemmanuil E; Dohmen H; Acker T; von Hoff K; Schmid S; Miele E; Filipski K; Kitanovski L; Krskova L; Gojo J; Haberler C; Alvaro F; Ecker J; Selt F; Milde T; Witt O; Oehme I; Kool M; von Deimling A; Korshunov A; Pfister SM; Sahm F; Jones DTW
Acta Neuropathol; 2021 Nov; 142(5):841-857. PubMed ID: 34417833
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10. Analysis and identification of novel biomarkers involved in neuroblastoma via integrated bioinformatics.
Chen B; Ding P; Hua Z; Qin X; Li Z
Invest New Drugs; 2021 Feb; 39(1):52-65. PubMed ID: 32772341
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11. Pituitary Gangliocytoma Producing TSH and TRH: A Review of "Gangliocytomas of the Sellar Region".
Sakata K; Fujimori K; Komaki S; Furuta T; Sugita Y; Ashida K; Nomura M; Morioka M
J Clin Endocrinol Metab; 2020 Oct; 105(10):3109-21. PubMed ID: 32706866
[TBL] [Abstract] [Full Text] [Related]
12. gata2 Regulates Constitutive PD-L1 and PD-L2 Expression in Brain tumors.
Fu Y; Liu CJ; Kobayashi DK; Johanns TM; Bowman-Kirigin JA; Schaettler MO; Mao DD; Bender D; Kelley DG; Uppaluri R; Bi WL; Dunn IF; Tao Y; Luo J; Kim AH; Dunn GP
Sci Rep; 2020 Jun; 10(1):9027. PubMed ID: 32493985
[TBL] [Abstract] [Full Text] [Related]
13. GATA3 immunoreactivity expands the transcription factor profile of pituitary neuroendocrine tumors.
Mete O; Kefeli M; Çalışkan S; Asa SL
Mod Pathol; 2019 Apr; 32(4):484-489. PubMed ID: 30390035
[TBL] [Abstract] [Full Text] [Related]
14. IDH1-mutated transgenic zebrafish lines: An in-vivo model for drug screening and functional analysis.
Gao Y; de Wit M; Struys EA; van der Linde HCZ; Salomons GS; Lamfers MLM; Willemsen R; Sillevis Smitt PAE; French PJ
PLoS One; 2018; 13(6):e0199737. PubMed ID: 29953513
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15. Patients with melanoma treated with an anti-PD-1 antibody beyond RECIST progression: a US Food and Drug Administration pooled analysis.
Beaver JA; Hazarika M; Mulkey F; Mushti S; Chen H; He K; Sridhara R; Goldberg KB; Chuk MK; Chi DC; Chang J; Barone A; Balasubramaniam S; Blumenthal GM; Keegan P; Pazdur R; Theoret MR
Lancet Oncol; 2018 Feb; 19(2):229-239. PubMed ID: 29361469
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16. Melanoma in patients with gata2 deficiency.
Nguyen J; Alexander T; Jiang H; Hill N; Abdullaev Z; Pack SD; Hsu AP; Holland SM; Hickstein DD; Engels EA; Brownell I
Pigment Cell Melanoma Res; 2018 Mar; 31(2):337-340. PubMed ID: 29156497
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17. Essential Role of gata2 in the Negative Regulation of Type 2 Deiodinase Gene by Liganded Thyroid Hormone Receptor β2 in Thyrotroph.
Matsunaga H; Sasaki S; Suzuki S; Matsushita A; Nakamura H; Nakamura HM; Hirahara N; Kuroda G; Iwaki H; Ohba K; Morita H; Oki Y; Suda T
PLoS One; 2015; 10(11):e0142400. PubMed ID: 26571013
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18. Merkel cell carcinoma in a patient with gata2 deficiency: a novel association with primary immunodeficiency.
Crall C; Morley KW; Rabinowits G; Schmidt B; Dioun Broyles A; Huang JT
Br J Dermatol; 2016 Jan; 174(1):169-71. PubMed ID: 26252413
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19. gata2 promotes glioma progression through EGFR/ERK/Elk-1 pathway.
Wang Z; Yuan H; Sun C; Xu L; Chen Y; Zhu Q; Zhao H; Huang Q; Dong J; Lan Q
Med Oncol; 2015 Apr; 32(4):87. PubMed ID: 25707769
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20. gata2 germline mutations impair gata2 transcription, causing haploinsufficiency: functional analysis of the p.Arg396Gln mutation.
Cortés-Lavaud X; Landecho MF; Maicas M; Urquiza L; Merino J; Moreno-Miralles I; Odero MD
J Immunol; 2015 Mar; 194(5):2190-8. PubMed ID: 25624456
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