Brault Ariane, Mourer Thierry, Labbé Simon
Département de Biochimie, Faculté de Médecine et des Sciences de la Santé, Université de Sherbrooke, Sherbrooke, QC, Canada.
IUBMB Life. 2015 Nov;67(11):801-15. doi: 10.1002/iub.1441. Epub 2015 Oct 16.
When iron load exceeds that needed by fission and filamentous yeasts, iron-regulatory GATA-type transcription factors repress genes encoding iron acquisition systems. In contrast, under iron starvation, optimization of cellular iron utilization is coordinated by a specialized regulatory subunit of the CCAAT-binding factor that fosters repression of genes encoding iron-using proteins. Despite these findings, there is still limited knowledge concerning the mechanisms by which these iron-responsive regulators respond to high- or low-iron availability. To provide a framework for understanding common and distinct properties of iron-dependent transcriptional regulators, a repertoire of their functional domains in different fungal species is presented here. In addition, discovery of interacting partners of these iron-responsive factors contributes to provide additional insight into their properties.
当铁负荷超过裂殖酵母和丝状酵母所需量时,铁调节型GATA转录因子会抑制编码铁获取系统的基因。相反,在铁饥饿条件下,细胞铁利用的优化由CCAAT结合因子的一个特殊调节亚基协调,该亚基促进对编码铁利用蛋白的基因的抑制。尽管有这些发现,但关于这些铁响应调节因子对高铁或低铁可用性做出反应的机制,我们仍然知之甚少。为了提供一个理解铁依赖性转录调节因子共同和独特特性的框架,本文展示了不同真菌物种中它们功能域的全部信息。此外,发现这些铁响应因子的相互作用伙伴有助于进一步深入了解它们的特性。