Otsuka Fuminori, Ohno Shotaro, Suzuki Kaoru, Takahashi Kazuko, Ohsawa Motoyasu, Koizumi Shinji
Faculty of Pharmaceutical Sciences, Teikyo University, Sagamihara City, Japan.
Yakugaku Zasshi. 2007 Apr;127(4):675-84. doi: 10.1248/yakushi.127.675.
Transcriptional activation of metallothionein (MT) genes by heavy metals is a valuable system for understanding the functions of MT as well as the cellular response against heavy metals. Although it is now known that heavy metal signals culminating in MT induction converge upon a transcription factor MTF-1, the mechanism underlying the MTF-1 response to heavy metals has not been elucidated. To address this issue, we investigated various aspects of the in vivo response of MTF-1 against heavy metals. Chromatin immunoprecipitation assay showed that heavy metal-dependent DNA binding of MTF-1 is the critical step in vivo. MTF-1 is primarily localized in the nucleus so that heavy metal-dependent nuclear translocation demonstrated by other groups does not seem to be universal and hence may not be critical for activation of MTF-1. In the six Zn finger motifs, the hallmark of MTF-1, the third and the fourth fingers are essential for the nuclear localization of MTF-1. Furthermore, all fingers except the last are important for transcriptional activation function of MTF-1, suggesting their key role for MTF-1 function. Also, a cysteine cluster structure located in the C-terminal region of MTF-1 is critical for transactivating function of MTF-1. These results suggest a central role of the Zn-finger domain and intramolecular cooperation through a structural change of MTF-1 for its response to heavy metal challenge.
重金属对金属硫蛋白(MT)基因的转录激活是一个用于理解MT功能以及细胞对重金属反应的重要系统。尽管现在已知导致MT诱导的重金属信号汇聚于转录因子MTF-1,但MTF-1对重金属反应的潜在机制尚未阐明。为了解决这个问题,我们研究了MTF-1在体内对重金属反应的各个方面。染色质免疫沉淀分析表明,MTF-1依赖重金属的DNA结合是体内的关键步骤。MTF-1主要定位于细胞核,因此其他研究小组所证明的依赖重金属的核转位似乎并不普遍,因而可能对MTF-1的激活并不关键。在MTF-1的标志性六个锌指基序中,第三和第四个锌指对于MTF-1的核定位至关重要。此外,除最后一个锌指外,所有锌指对于MTF-1的转录激活功能都很重要,这表明它们在MTF-1功能中起关键作用。同样,位于MTF-1 C末端区域的半胱氨酸簇结构对于MTF-1的反式激活功能至关重要。这些结果表明锌指结构域以及通过MTF-1结构变化进行的分子内协作在其对重金属挑战的反应中起核心作用。