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小鼠红白血病细胞分化途径的时间图谱

Temporal mapping of the differentiation pathway of the murine erythroleukemia cell.

作者信息

Ebisuzaki K, Casley W L, Griffiths A, Wheaton L

机构信息

Department of Microbiology and Immunology, University of Western Ontario, London, Canada.

出版信息

Cancer Res. 1991 Mar 15;51(6):1668-73.

PMID:1998957
Abstract

These studies are concerned with "mapping" the temporal order of the precommitment events in the differentiation pathway of the Friend erythroleukemia cell. We have used a single-block procedure in which a differentiation-specific inhibitor of a temperature-sensitive (ts) differentiation-defective mutation was used to block the differentiation program. Later, the block was removed, differentiation was allowed to proceed, and the time required to reach a reference marker was monitored. These studies have indicated that the mutations tsC2GP1 and tsB5A, the poly(ADP-ribose) polymerase inhibitor 3-aminobenzamide, and the glucocorticoid hormone dexamethasone blocked functions which are required just prior to commitment. We have also used a double-block procedure involving two consecutive restrictive conditions, which suggests that the 3-aminobenzamide- and tsC2GP1-blocked functions constitute a part of a sequentially ordered pathway leading to terminal differentiation. The convergence of the 3-aminobenzamide, dexamethasone, and ts mutational blocks just prior to commitment suggests that the blocked functions may be part of a major control mechanism for commitment. In these studies, we have introduced a cytochalasin B-based assay to monitor commitment. The use of cytochalasin B permits a direct assay for commitment and obviates the need for colony-forming assays using semisolid medium, which have inherent problems such as efficiency of plating.

摘要

这些研究关注于对Friend红白血病细胞分化途径中预决定事件的时间顺序进行“映射”。我们采用了一种单阻断程序,其中使用温度敏感(ts)分化缺陷突变的分化特异性抑制剂来阻断分化程序。随后,解除阻断,让分化继续进行,并监测达到参考标志物所需的时间。这些研究表明,突变体tsC2GP1和tsB5A、聚(ADP - 核糖)聚合酶抑制剂3 - 氨基苯甲酰胺以及糖皮质激素地塞米松阻断了预决定之前所需的功能。我们还采用了涉及两个连续限制条件的双阻断程序,这表明3 - 氨基苯甲酰胺和tsC2GP1阻断的功能构成了通向终末分化的顺序排列途径的一部分。在预决定之前,3 - 氨基苯甲酰胺、地塞米松和ts突变阻断的汇聚表明,被阻断的功能可能是预决定主要控制机制的一部分。在这些研究中,我们引入了一种基于细胞松弛素B的检测方法来监测预决定。细胞松弛素B的使用允许对预决定进行直接检测,并且无需使用半固体培养基进行集落形成检测,后者存在诸如接种效率等固有问题。

相似文献

1
Temporal mapping of the differentiation pathway of the murine erythroleukemia cell.小鼠红白血病细胞分化途径的时间图谱
Cancer Res. 1991 Mar 15;51(6):1668-73.
2
Dimethyl sulfoxide-induced differentiation of Friend erythroleukemia cells in the absence of cytokinesis.在无胞质分裂情况下二甲基亚砜诱导的弗氏红白血病细胞分化
Cancer Res. 1979 Oct;39(10):4058-63.
3
Cytochemical characteristics of leukopoietic differentiation in murine erythroleukemic (Friend) cells.小鼠红白血病(Friend)细胞中白细胞生成分化的细胞化学特征。
Cancer Res. 1980 Mar;40(3):866-72.
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Alterations in electrophoretic mobility, diaphorase activity, and terminal differentiation induced in murine erythroleukemia lines by differentiating agents.分化剂诱导小鼠红白血病细胞系中电泳迁移率、黄递酶活性及终末分化的改变。
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D,L-alpha-difluoromethylornithine, an irreversible inhibitor of ornithine decarboxylase, induces differentiation in MEL cells.D,L-α-二氟甲基鸟氨酸是鸟氨酸脱羧酶的不可逆抑制剂,可诱导MEL细胞分化。
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Deregulated expression of the PU.1 transcription factor blocks murine erythroleukemia cell terminal differentiation.PU.1转录因子的失调表达会阻断小鼠红白血病细胞的终末分化。
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Idiotype mimicry by a differentiation antigen on Friend erythroleukemia cells.弗瑞德红白血病细胞上一种分化抗原的独特型模拟。
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Procaine inhibits the erythroid differentiation of MEL cells by blocking commitment: possible involvement of calcium metabolism.普鲁卡因通过阻断定向分化来抑制MEL细胞的红系分化:钙代谢可能参与其中。
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Molecular and cellular mechanisms of leukemic hemopoietic cell differentiation: an analysis of the Friend system.白血病造血细胞分化的分子与细胞机制:对Friend系统的分析
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Combination cytotoxic-differentiation therapy of mouse erythroleukemia cells with 5-fluorouracil and hexamethylene bisacetamide.5-氟尿嘧啶与六甲撑双乙酰胺联合对小鼠红白血病细胞进行细胞毒性-分化治疗
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引用本文的文献

1
Molecular and biochemical features of poly (ADP-ribose) metabolism.聚(ADP - 核糖)代谢的分子和生化特征
Mol Cell Biochem. 1993 May 26;122(2):171-93. doi: 10.1007/BF01076101.
2
Modulation of poly(ADP-ribose) polymerase during neutrophilic and monocytic differentiation of promyelocytic (NB4) and myelocytic (HL-60) leukaemia cells.
Biochem J. 1995 May 15;308 ( Pt 1)(Pt 1):131-7. doi: 10.1042/bj3080131.