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Ann N Y Acad Sci. 2012 Aug;1266:47-54. doi: 10.1111/j.1749-6632.2012.06625.x.
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本文引用的文献

1
The pathogenesis of mixed-lineage leukemia.混合谱系白血病的发病机制。
Annu Rev Pathol. 2012;7:283-301. doi: 10.1146/annurev-pathol-011811-132434. Epub 2011 Oct 17.
2
miR-125b, a target of CDX2, regulates cell differentiation through repression of the core binding factor in hematopoietic malignancies.miR-125b 是 CDX2 的靶标,通过抑制造血恶性肿瘤中的核心结合因子来调节细胞分化。
J Biol Chem. 2011 Nov 4;286(44):38253-38263. doi: 10.1074/jbc.M111.269670. Epub 2011 Sep 8.
3
Concerted involvement of Cdx/Hox genes and Wnt signaling in morphogenesis of the caudal neural tube and cloacal derivatives from the posterior growth zone.Cdx/Hox 基因和 Wnt 信号在尾部神经管和后生长区的肛后衍生物的形态发生中的协同作用。
Development. 2011 Aug;138(16):3451-62. doi: 10.1242/dev.066118. Epub 2011 Jul 13.
4
Modulation of Tcf3 repressor complex composition regulates cdx4 expression in zebrafish.Tcf3 抑制复合物组成的调节调控斑马鱼中 cdx4 的表达。
EMBO J. 2011 Jun 10;30(14):2894-907. doi: 10.1038/emboj.2011.184.
5
HoxA10 activates CDX4 transcription and Cdx4 activates HOXA10 transcription in myeloid cells.HoxA10 激活 CDX4 的转录,而 Cdx4 激活髓系细胞中 HOXA10 的转录。
J Biol Chem. 2011 May 27;286(21):19047-64. doi: 10.1074/jbc.M110.213983. Epub 2011 Apr 6.
6
Interactions between Cdx genes and retinoic acid modulate early cardiogenesis.Cdx 基因与维甲酸的相互作用调节早期心脏发生。
Dev Biol. 2011 Jun 1;354(1):134-42. doi: 10.1016/j.ydbio.2011.03.027. Epub 2011 Apr 3.
7
Regulation of TCF3 by Wnt-dependent phosphorylation during vertebrate axis specification.脊椎动物轴形成过程中 Wnt 依赖性磷酸化调控 TCF3。
Dev Cell. 2010 Oct 19;19(4):521-32. doi: 10.1016/j.devcel.2010.09.005.
8
Cdx4 is a Cdx2 target gene.Cdx4 是 Cdx2 的靶基因。
Mech Dev. 2011 Jan-Feb;128(1-2):41-8. doi: 10.1016/j.mod.2010.09.004. Epub 2010 Oct 7.
9
HOX gene expression in phenotypic and genotypic subgroups and low HOXA gene expression as an adverse prognostic factor in pediatric ALL.HOX 基因在表型和基因型亚组中的表达及低 HOXA 基因表达作为儿童 ALL 的不良预后因素。
Pediatr Blood Cancer. 2010 Dec 1;55(6):1072-82. doi: 10.1002/pbc.22749.
10
Cdx4 is dispensable for murine adult hematopoietic stem cells but promotes MLL-AF9-mediated leukemogenesis.Cdx4 对于小鼠成体造血干细胞并非不可或缺,但可促进 MLL-AF9 介导的白血病发生。
Haematologica. 2010 Oct;95(10):1642-50. doi: 10.3324/haematol.2010.023168. Epub 2010 May 21.

血液发育和白血病中的尾部基因。

Caudal genes in blood development and leukemia.

机构信息

University of Tübingen Medical Center-Hematology & Oncology, Tübingen, Germany.

出版信息

Ann N Y Acad Sci. 2012 Aug;1266:47-54. doi: 10.1111/j.1749-6632.2012.06625.x.

DOI:10.1111/j.1749-6632.2012.06625.x
PMID:22901255
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3431192/
Abstract

Members of the caudal gene family (in mice and humans: Cdx1, Cdx2, and Cdx4) have been studied during early development as regulators of axial elongation and anteroposterior patterning. In the adult, Cdx1 and Cdx2, but not Cdx4, have been intensively explored for their function in intestinal tissue homeostasis and the pathogenesis of gastrointestinal cancers. Involvement in embryonic hematopoiesis was first demonstrated in zebrafish, where cdx genes render posterior lateral plate mesoderm competent to respond to genes specifying hematopoietic fate, and compound mutations in cdx genes thus result in a bloodless phenotype. Parallel studies performed in zebrafish embryos and murine embryonic stem cells (ESCs) delineate conserved pathways between fish and mammals, corroborating a BMP/Wnt-Cdx-Hox axis during blood development that can be employed to augment derivation of blood progenitors from pluripotent stem cells in vitro. The molecular regulation of Cdx genes appears complex, as more recent data suggest involvement of non-Hox-related mechanisms and the existence of auto- and cross-regulatory loops governed by morphogens. Here, we will review the role of Cdx genes during hematopoietic development by comparing effects in zebrafish and mice and discuss their participation in malignant blood diseases.

摘要

尾部基因家族(在小鼠和人类中:Cdx1、Cdx2 和 Cdx4)成员在早期发育过程中作为轴向伸长和前后模式形成的调节剂进行了研究。在成人中,Cdx1 和 Cdx2(而非 Cdx4)已被深入研究其在肠道组织稳态和胃肠道癌症发病机制中的功能。尾部基因在斑马鱼胚胎造血中的参与首先得到证实,其中 cdx 基因使后侧板中胚层能够对指定造血命运的基因做出反应,并且 cdx 基因的复合突变导致无血表型。在斑马鱼胚胎和鼠胚胎干细胞(ESCs)中进行的平行研究描绘了鱼类和哺乳动物之间的保守途径,证实了血液发育过程中的 BMP/Wnt-Cdx-Hox 轴,该轴可用于增强体外多能干细胞来源的造血祖细胞的分化。Cdx 基因的分子调控似乎很复杂,因为最近的数据表明涉及非 Hox 相关机制以及由形态发生素控制的自身和交叉调节环的存在。在这里,我们将通过比较斑马鱼和小鼠中的作用来综述 Cdx 基因在造血发育中的作用,并讨论它们在恶性血液病中的参与。