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通过体内生物素化标记和质谱法分离和鉴定造血转录因子复合物

Isolation and characterization of hematopoietic transcription factor complexes by in vivo biotinylation tagging and mass spectrometry.

作者信息

Grosveld Frank, Rodriguez Patrick, Meier Natalia, Krpic Sanja, Pourfarzad Farzin, Papadopoulos Petros, Kolodziej Katarzyna, Patrinos George P, Hostert Arnd, Strouboulis John

机构信息

Department of Cell Biology, Erasmus University Medical Center, 50 Dr. Molewaterplein, 3015 GE Rotterdam, the Netherlands.

出版信息

Ann N Y Acad Sci. 2005;1054:55-67. doi: 10.1196/annals.1345.008.

Abstract

We have described the application of a simple biotinylation tagging approach for the direct purification of tagged transcription factor complexes, based on the use of artificial short peptide tags that are specifically and efficiently biotinylated by the bacterial BirA biotin ligase, which is co-expressed in cells with the tagged factor. We used this approach to initially characterize complexes formed by the hematopoietic transcription factor GATA-1 in erythroid cells. GATA-1 is essential for the erythroid differentiation, its functions encompassing upregulation of erythroid genes, repression of alternative transcription programs, and suppression of cell proliferation. However, it was not clear how all of these GATA-1 functions are mediated. Our work describes, for the first time, distinct GATA-1 interactions with the essential hematopoietic factor Gfi-1b, the repressive MeCP1 complex, and the chromatin remodeling ACF/WCRF complex, in addition to the known GATA-1/FOG-1 and GATA-1/TAL-1 complexes. We also provide evidence that distinct GATA-1 complexes are associated with specific GATA-1 functions in erythroid differentiation, for example, GATA-1/Gfi-1b with the suppression of cell proliferation and GATA-1/FOG-1/MeCP1 with the repression of other hematopoietic transcription programs. We next applied the biotinylation tag to Ldb-1, a known partner of GATA-1, and characterized a number of novel interaction partners that are essential in erythroid development, in particular, Eto-2, Lmo4, and CdK9. Last, we are in the process of applying the same technology to characterize the factors that are bound to the suppressed gamma-globin promoter in vivo.

摘要

我们描述了一种简单的生物素化标记方法的应用,该方法用于直接纯化标记的转录因子复合物,其基于使用人工短肽标签,这些标签可被细菌BirA生物素连接酶特异性且高效地生物素化,该酶与标记因子在细胞中共表达。我们使用这种方法初步表征了红细胞中造血转录因子GATA-1形成的复合物。GATA-1对红细胞分化至关重要,其功能包括上调红细胞基因、抑制替代转录程序以及抑制细胞增殖。然而,尚不清楚所有这些GATA-1功能是如何介导的。我们的工作首次描述了GATA-1与必需的造血因子Gfi-1b、抑制性MeCP1复合物以及染色质重塑ACF/WCRF复合物的不同相互作用,此外还有已知的GATA-1/FOG-1和GATA-1/TAL-1复合物。我们还提供证据表明,不同的GATA-1复合物与红细胞分化中特定的GATA-1功能相关,例如,GATA-1/Gfi-1b与细胞增殖的抑制相关,GATA-1/FOG-1/MeCP1与其他造血转录程序的抑制相关。接下来,我们将生物素化标签应用于GATA-1的已知伙伴Ldb-1,并表征了一些在红细胞发育中至关重要的新型相互作用伙伴,特别是Eto-2、Lmo4和CdK9。最后,我们正在应用相同技术来表征体内与被抑制的γ-珠蛋白启动子结合的因子。

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