Park Kyoungsook, Kim Kwangbae, Rho Seung Bae, Choi Kyusam, Kim Dojin, Oh Sun-Hee, Park Jinhee, Lee Seung-Hoon, Lee Je-Ho
Molecular Therapy Research Center, Sungkyunkwan University, Samsung Medical Center Annex 8F, 50 Ilwon-dong, Kangnam-ku, Seoul 135-710, Korea.
Cancer Res. 2005 Feb 1;65(3):749-57.
The stability of wild-type p53 is critical for its apoptotic function. In some cancers, wild-type p53 is inactivated by interaction with viral and cellular proteins, and restoration of its activity has therapeutic potential. Here, we identify homeobox Msx1 as a p53-interacting protein and show its novel function as a p53 regulator. Overexpression of homeobox Msx1 induced apoptosis of cancer cells harboring nonfunctional wild-type p53 and suppressed growth of human tumor xenografts in nude mice. The homeodomain of Msx1 functions as a protein-protein interacting motif rather than a DNA-binding domain and is essential for stabilization, nuclear accumulation, and apoptotic function of wild-type p53. The identification of a novel function of Msx1 as a p53 regulator may open new avenues for developing improved molecular therapies for tumors with a nonmutational p53 inactivation mechanism.
野生型p53的稳定性对其凋亡功能至关重要。在某些癌症中,野生型p53通过与病毒和细胞蛋白相互作用而失活,恢复其活性具有治疗潜力。在此,我们鉴定出同源框Msx1为一种与p53相互作用的蛋白,并展示了其作为p53调节剂的新功能。同源框Msx1的过表达诱导了携带无功能野生型p53的癌细胞凋亡,并抑制了裸鼠体内人肿瘤异种移植物的生长。Msx1的同源结构域作为一种蛋白质-蛋白质相互作用基序而非DNA结合结构域发挥作用,并且对于野生型p53的稳定、核积累和凋亡功能至关重要。Msx1作为p53调节剂这一新功能的鉴定可能为开发针对具有非突变型p53失活机制的肿瘤的改良分子疗法开辟新途径。