Pediatric Oncology Branch, National Cancer Institute, Bethesda, Maryland, USA.
Mol Cell Biol. 2012 Apr;32(8):1518-28. doi: 10.1128/MCB.06039-11. Epub 2012 Feb 13.
CASZ1 is a zinc finger (ZF) transcription factor that is critical for controlling the normal differentiation of subtypes of neural and cardiac muscle cells. In neuroblastoma tumors, loss of CASZ1 is associated with poor prognosis and restoration of CASZ1 function suppresses neuroblastoma tumorigenicity. However, the key domains by which CASZ1 transcription controls developmental processes and neuroblastoma tumorigenicity have yet to be elucidated. In this study, we show that loss of any one of ZF1 to ZF4 resulted in a 58 to 79% loss in transcriptional activity, as measured by induction of tyrosine hydroxylase promoter-luciferase activity, compared to that of wild-type (WT) CASZ1b. Mutation of ZF5 or deletion of the C-terminal sequence of amino acids (aa) 728 to 1166 (a truncation of 38% of the protein) does not significantly alter transcriptional function. A series of N-terminal truncations reveals a critical transcriptional activation domain at aa 31 to 185 and a nuclear localization signal at aa 23 to 29. Soft agar colony formation assays and xenograft studies show that WT CASZ1b is more active in suppressing neuroblastoma growth than CASZ1b with a ZF4 mutation or a deletion of aa 31 to 185. This study identifies key domains needed for CASZ1b to regulate gene transcription. Furthermore, we establish a link between loss of CASZ1b transcriptional activity and attenuation of CASZ1b-mediated inhibition of neuroblastoma growth and tumorigenicity.
CASZ1 是一种锌指 (ZF) 转录因子,对于控制神经和心肌细胞亚型的正常分化至关重要。在神经母细胞瘤肿瘤中,CASZ1 的缺失与预后不良相关,而恢复 CASZ1 功能可抑制神经母细胞瘤的致瘤性。然而,CASZ1 转录控制发育过程和神经母细胞瘤致瘤性的关键结构域尚未阐明。在这项研究中,我们表明,ZF1 到 ZF4 的任何一个缺失都会导致酪氨酸羟化酶启动子 - 荧光素酶活性的诱导降低 58%到 79%,与野生型 (WT) CASZ1b 相比。ZF5 的突变或氨基酸 (aa) 728 到 1166 端的 C 末端序列缺失不会显著改变转录功能。一系列 N 末端截断揭示了一个关键的转录激活结构域在 aa 31 到 185,以及一个核定位信号在 aa 23 到 29。软琼脂集落形成测定和异种移植研究表明,WT CASZ1b 在抑制神经母细胞瘤生长方面比具有 ZF4 突变或 aa 31 到 185 缺失的 CASZ1b 更活跃。这项研究确定了 CASZ1b 调节基因转录所需的关键结构域。此外,我们建立了 CASZ1b 转录活性丧失与 CASZ1b 介导的抑制神经母细胞瘤生长和致瘤性减弱之间的联系。