Haploinsufficiency of Bcl11b for suppression of lymphomagenesis and thymocyte development.
暂无分享,去创建一个
R. Kominami | K. Kamimura | Y. Mishima | T. Kubota | Y. Wakabayashi | Y. Aoyagi | K. Okazuka | H. Ohi | Yoshihiro Yoshikai | Kenya Kamimura
[1] J. Soulier,et al. Transforming potential of the T‐cell acute lymphoblastic leukemia‐associated homeobox genes HOXA13, TLX1, and TLX3 , 2006, Genes, chromosomes & cancer.
[2] R. Kominami,et al. Expression of TCRαβ Partly Rescues Developmental Arrest and Apoptosis of αβ T cells in Bcl11b−/− Mice1 , 2006, The Journal of Immunology.
[3] R. Siebert,et al. Disruption of the BCL11B gene through inv(14)(q11.2q32.31) results in the expression of BCL11B-TRDC fusion transcripts and is associated with the absence of wild-type BCL11B transcripts in T-ALL , 2005, Leukemia.
[4] Paola Arlotta,et al. Neuronal Subtype-Specific Genes that Control Corticospinal Motor Neuron Development In Vivo , 2005, Neuron.
[5] Allan Balmain,et al. Fbxw7/Cdc4 is a p53-dependent, haploinsufficient tumour suppressor gene , 2004, Nature.
[6] J. Rosen,et al. Chk1 is haploinsufficient for multiple functions critical to tumor suppression. , 2004, Cancer cell.
[7] H. Kosugi-Okano,et al. Involvement of V(D)J recombinase in the generation of intragenic deletions in the Rit1/Bcl11b tumor suppressor gene in gamma-ray-induced thymic lymphomas and in normal thymus of the mouse. , 2004, Carcinogenesis.
[8] A. Raap,et al. A novel t(6;14)(q25-q27;q32) in acute myelocytic leukemia involves the BCL11B gene. , 2004, Cancer genetics and cytogenetics.
[9] C. Sherr,et al. Principles of Tumor Suppression , 2004, Cell.
[10] H. Drexler,et al. The cardiac homeobox gene NKX2-5 is deregulated by juxtaposition with BCL11B in pediatric T-ALL cell lines via a novel t(5;14)(q35.1;q32.2). , 2003, Cancer research.
[11] S. Aizawa,et al. Bcl11b is required for differentiation and survival of αβ T lymphocytes , 2003, Nature Immunology.
[12] H. Drexler,et al. Activation of HOX11L2 by juxtaposition with 3′‐BCL11B in an acute lymphoblastic leukemia cell line (HPB‐ALL) with t(5;14)(q35;q32.2) , 2003, Genes, chromosomes & cancer.
[13] A. Matsuki,et al. Homozygous deletions and point mutations of the Rit1/Bcl11b gene in gamma-ray induced mouse thymic lymphomas. , 2003, Biochemical and biophysical research communications.
[14] Hong Wu,et al. PTEN tumor suppressor regulates p53 protein levels and activity through phosphatase-dependent and -independent mechanisms. , 2003, Cancer cell.
[15] Satoshi Matsumoto,et al. Frequent somatic mutations in PTEN and TP53 are mutually exclusive in the stroma of breast carcinomas , 2002, Nature Genetics.
[16] D G Oscier,et al. The BCL11 gene family: involvement of BCL11A in lymphoid malignancies. , 2001, Blood.
[17] A. Berns,et al. Haplo-insufficiency? Let me count the ways. , 2001, Genes & development.
[18] R. Heilig,et al. A new recurrent and specific cryptic translocation, t(5;14)(q35;q32), is associated with expression of the Hox11L2 gene in T acute lymphoblastic leukemia , 2001, Leukemia.
[19] K. Ohshima,et al. Cytogenetic analysis and clinical significance in adult T-cell leukemia/lymphoma: a study of 50 cases from the human T-cell leukemia virus type-1 endemic area, Nagasaki. , 2001, Blood.
[20] T. Yoshimoto,et al. Functional evaluation of p53 and PTEN gene mutations in gliomas. , 2000, Clinical cancer research : an official journal of the American Association for Cancer Research.
[21] W. Cook,et al. Accommodating haploinsufficient tumour suppressor genes in Knudson's model , 2000, Oncogene.
[22] M. Leid,et al. Isolation of a Novel Family of C2H2 Zinc Finger Proteins Implicated in Transcriptional Repression Mediated by Chicken Ovalbumin Upstream Promoter Transcription Factor (COUP-TF) Orphan Nuclear Receptors* , 2000, The Journal of Biological Chemistry.
[23] James M. Roberts,et al. The murine gene p27Kip1 is haplo-insufficient for tumour suppression , 1998, Nature.
[24] D. Pinkel,et al. Retention of wild‐type p53 in tumors from p53 heterozygous mice: reduction of p53 dosage can promote cancer formation , 1998, The EMBO journal.
[25] S. Aizawa,et al. Allelic loss analysis of γ-ray-induced mouse thymic lymphomas: two candidate tumor suppressor gene loci on chromosomes 12 and 16 , 1998, Oncogene.
[26] K. Kinzler,et al. The multistep nature of cancer. , 1993, Trends in genetics : TIG.