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Localization of nucleophosmin in nuclear matrix and changes in its expression during the differentiation of human neuroblastoma induced by retinoic acid
Authors:Song‐Lin Shi  Ying Liang  Qi‐Fu Li  Qing‐Rong Liu  Guang‐Jun Jing  San‐Ying Wang  Xiu‐Yan Zhang  Fu‐Yun Wu
Institution:1. The Key Laboratory of Ministry of Education for Cell Biology and Tumor Cell Engineering, School of Life Science, Xiamen University, Xiamen 361005, PR China;2. Medical College of Xiamen University, Xiamen 361005, PR China;3. Molecular Neurobiology Branch, National Institute on Drug Abuse‐Intramural Research Program (NIDA‐IRP), NIH, Department of Health and Human Services (DHSS), 333 Cassell Drive, Baltimore, Maryland 21224
Abstract:In this article, we selectively extracted the nuclear matrix and intermediate filament system of human neuroblastoma SK‐N‐SH cells pre‐ and post‐treated with retinoic acid (RA). The distribution of nucleophosmin (NPM) in the nuclear matrix and its colocalization with several products of related genes were investigated. Results from two‐dimensional gel electrophoresis and MALDI‐TOF showed that NPM was a component of the nuclear matrix and its expression in SK‐N‐SH cells post‐treated with RA was down‐regulated. Immunofluorescent microscopy observations further showed that NPM was localized in the nuclear matrix of SK‐N‐SH cells, and its expression level and distribution were altered after treatment with RA. The colocalization of NPM with c‐myc, c‐fos, p53, and Rb in SK‐N‐SH cells was observed under a laser scanning confocal microscope, but the colocalization region was changed by RA. Our results prove that NPM is a nuclear matrix protein, which is localized in nuclear matrix fibers. The colocalization of NPM with its related genes and oncogenes affect the differentiation of SK‐N‐SH cells. The expression of NPM and its distribution in the process of cell differentiation deserve more intensive investigation. J. Cell. Biochem. 111: 67–74, 2010. © 2010 Wiley‐Liss, Inc.
Keywords:nucleophosmin  nuclear matrix  human neuroblastoma  cell differentiation
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