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GATA1 mutations in acute leukemia in children with Down syndrome.唐氏综合征患儿急性白血病中的GATA1突变
Cancer Genet Cytogenet. 2006 Apr 15;166(2):112-6. doi: 10.1016/j.cancergencyto.2005.10.008.
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Notch signaling requires GATA-2 to inhibit myelopoiesis from embryonic stem cells and primary hemopoietic progenitors.Notch信号通路需要GATA-2来抑制胚胎干细胞和原代造血祖细胞的髓系造血。
J Immunol. 2006 May 1;176(9):5267-75. doi: 10.4049/jimmunol.176.9.5267.
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Characterization of the split ends-like gene spenito reveals functional antagonism between SPOC family members during Drosophila eye development.类似发梢分裂基因spenito的特征揭示了果蝇眼睛发育过程中SPOC家族成员之间的功能拮抗作用。
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Notch activation is an early and critical event during T-Cell leukemogenesis in Ikaros-deficient mice.在Ikaros基因缺陷小鼠的T细胞白血病发生过程中,Notch激活是一个早期且关键的事件。
Mol Cell Biol. 2006 Jan;26(1):209-20. doi: 10.1128/MCB.26.1.209-220.2006.
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Early block to erythromegakaryocytic development conferred by loss of transcription factor GATA-1.转录因子GATA-1缺失导致早期红巨核细胞发育阻滞。
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RBM15 and MKL1 mutational screening in megakaryoblastic leukemia cell lines and clinical samples.巨核母细胞白血病细胞系和临床样本中RBM15和MKL1的突变筛查
Leukemia. 2005 Aug;19(8):1492-4. doi: 10.1038/sj.leu.2403812.
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RBM15-MKL1 (OTT-MAL) fusion transcript in an adult acute myeloid leukemia patient.一名成年急性髓系白血病患者中的RBM15-MKL1(OTT-MAL)融合转录本
Am J Hematol. 2005 May;79(1):43-5. doi: 10.1002/ajh.20298.
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Muscle-specific signaling mechanism that links actin dynamics to serum response factor.将肌动蛋白动力学与血清反应因子联系起来的肌肉特异性信号传导机制。
Mol Cell Biol. 2005 Apr;25(8):3173-81. doi: 10.1128/MCB.25.8.3173-3181.2005.
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Integration of Notch and Wnt signaling in hematopoietic stem cell maintenance.Notch与Wnt信号通路在造血干细胞维持中的整合
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10
Notch signals inhibit the development of erythroid/megakaryocytic cells by suppressing GATA-1 activity through the induction of HES1.Notch信号通过诱导HES1抑制GATA-1活性,从而抑制红系/巨核系细胞的发育。
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Rbm15调节Notch诱导的转录激活并影响髓系分化。

Rbm15 modulates Notch-induced transcriptional activation and affects myeloid differentiation.

作者信息

Ma Xianyong, Renda Matthew J, Wang Lin, Cheng Ee-Chun, Niu Chao, Morris Stephan W, Chi Andrew S, Krause Diane S

机构信息

Yale University School of Medicine, Department of Laboratory Medicine, P.O. Box 208035, 333 Cedar Street, New Haven, CT 06520-8035, USA.

出版信息

Mol Cell Biol. 2007 Apr;27(8):3056-64. doi: 10.1128/MCB.01339-06. Epub 2007 Feb 5.

DOI:10.1128/MCB.01339-06
PMID:17283045
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1899951/
Abstract

RBM15 is the fusion partner with MKL in the t(1;22) translocation of acute megakaryoblastic leukemia. To understand the role of the RBM15-MKL1 fusion protein in leukemia, we must understand the normal functions of RBM15 and MKL. Here, we show a role for Rbm15 in myelopoiesis. Rbm15 is expressed at highest levels in hematopoietic stem cells and at more moderate levels during myelopoiesis of murine cell lines and primary murine cells. Decreasing Rbm15 levels with RNA interference enhances differentiation of the 32DWT18 myeloid precursor cell line. Conversely, enforced expression of Rbm15 inhibits 32DWT18 differentiation. We show that Rbm15 alters Notch-induced HES1 promoter activity in a cell type-specific manner. Rbm15 inhibits Notch-induced HES1 transcription in nonhematopoietic cells but stimulates this activity in hematopoietic cell lines, including 32DWT18 and human erythroleukemia cells. Moreover, the N terminus of Rbm15 coimmunoprecipitates with RBPJkappa, a critical factor in Notch signaling, and the Rbm15 N terminus has a dominant negative effect, impairing activation of HES1 promoter activity by full-length-Rbm15. Thus, Rbm15 is differentially expressed during hematopoiesis and may act to inhibit myeloid differentiation in hematopoietic cells via a mechanism that is mediated by stimulation of Notch signaling via RBPJkappa.

摘要

RBM15是急性巨核细胞白血病t(1;22)易位中与MKL的融合伴侣。为了解RBM15-MKL1融合蛋白在白血病中的作用,我们必须了解RBM15和MKL的正常功能。在此,我们展示了Rbm15在骨髓生成中的作用。Rbm15在造血干细胞中表达水平最高,在小鼠细胞系和原代小鼠细胞的骨髓生成过程中表达水平适中。用RNA干扰降低Rbm15水平可增强32DWT18髓系前体细胞系的分化。相反,Rbm15的强制表达抑制32DWT18的分化。我们表明,Rbm15以细胞类型特异性方式改变Notch诱导的HES1启动子活性。Rbm15在非造血细胞中抑制Notch诱导的HES1转录,但在包括32DWT18和人红白血病细胞在内的造血细胞系中刺激这种活性。此外,Rbm15的N末端与Notch信号传导中的关键因子RBPJkappa共免疫沉淀,并且Rbm15 N末端具有显性负效应,损害全长Rbm15对HES1启动子活性的激活。因此,Rbm15在造血过程中差异表达,并可能通过一种由RBPJkappa刺激Notch信号传导介导的机制来抑制造血细胞中的髓系分化。