Caslini C, Alarcòn A S, Hess J L, Tanaka R, Murti K G, Biondi A
Centro di Ricerca M Tettamanti, Clinica Pediatrica Università di Milano - Bicocca, Ospedale S Gerardo, Monza, Italy.
Leukemia. 2000 Nov;14(11):1898-908. doi: 10.1038/sj.leu.2401933.
The mixed-lineage leukemia gene (MLL) is associated with more than 25 chromosomal translocations involving band 11q23 in diverse subtypes of human acute leukemia. Conditional expression of a 50 kDa amino terminal fragment spanning the AT hook motifs of MLL (MLL3AT) causes cell cycle arrest, upregulation of p21Cip1 and p27KiP1 and partial monocytic differentiation of the monoblastic U937 cell line, suggesting a major role for MLL3AT in MLL-AF9-induced myelomonocytic differentiation. In this study, we analyzed the subcellular localization of conditionally expressed MLL3AT in both U937 and HeLa cell lines. Immunofluorescence staining, confocal laser scanning microscopy and immunoelectron microscopy indicated that MLL3AT, like endogenous MLL, localized in the nucleoplasm in a punctate pattern of distribution, including regions attached to the nuclear envelope and the periphery of the nucleolus. We found that MLL3AT and endogenous MLL were present in interphase nuclear matrices and colocalized with topoisomerase II to mitotic chromosomal scaffolds. Nucleoplasm and nucleolar localization was observed even for MLL-AF9 and MLL-AF4 conditionally expressed chimeric proteins, suggesting a common target conferred by the amino terminus of MLL to many if not all the chimeric MLL proteins. The nuclear matrix/scaffold association suggests a role for the amino terminus of MLL in the modulation of chromatin structure, leading to epigenetic effects on the maintenance of gene expression.
混合谱系白血病基因(MLL)与超过25种涉及人类急性白血病不同亚型中11q23带的染色体易位相关。跨越MLL的AT钩基序的50 kDa氨基末端片段(MLL3AT)的条件性表达导致细胞周期停滞、p21Cip1和p27KiP1上调以及单核细胞系U937的部分单核细胞分化,这表明MLL3AT在MLL-AF9诱导的骨髓单核细胞分化中起主要作用。在本研究中,我们分析了在U937和HeLa细胞系中条件性表达的MLL3AT的亚细胞定位。免疫荧光染色、共聚焦激光扫描显微镜和免疫电子显微镜表明,MLL3AT与内源性MLL一样,以点状分布模式定位于核质中,包括附着于核膜和核仁周边的区域。我们发现MLL3AT和内源性MLL存在于间期核基质中,并与拓扑异构酶II共定位于有丝分裂染色体支架上。即使对于条件性表达的嵌合蛋白MLL-AF9和MLL-AF4,也观察到了核质和核仁定位,这表明MLL的氨基末端赋予了许多(如果不是全部)嵌合MLL蛋白一个共同的靶点。核基质/支架关联表明MLL的氨基末端在染色质结构调节中起作用,导致对基因表达维持的表观遗传效应。