In this article, we will explore the fascinating world of Activating transcription factor. From its origins to its relevance today, we will delve into the most relevant and unknown aspects of this phenomenon. Through a detailed and rigorous analysis, we will try to shed light on Activating transcription factor and its impact in different areas. Along these lines, we will discover how Activating transcription factor has evolved over time, as well as the implications it has on our society. Without a doubt, this article will be an indispensable guide to understanding the importance of Activating transcription factor in the contemporary world.
Activating transcription factor, ATF, is a group of bZIP transcription factors, which act as homodimers or heterodimers with a range of other bZIP factors.[1] First, they have been described as members of the CREB/ATF family,[2] whereas it turned out later that some of them might be more similar to AP-1-like factors such as c-Jun or c-Fos.[3] In general, ATFs are known to respond to extracellular signals and this suggests an important role that they have in maintaining homeostasis. Some of these ATFs, such as ATF3, ATF4, and ATF6 are known to play a role in stress responses.[4] Another example of ATFs function would be ATFx that can suppress apoptosis.[5]
Genes include ATF1, ATF2, ATF3, ATF4, ATF5, ATF6, ATF7, ATFx.