School of Fundamental Sciences, Massey University, Palmerston North, New Zealand.
Maurice Wilkins Centre for Molecular BioDiscovery, Massey University, Palmerston North, New Zealand.
FEBS Lett. 2021 Feb;595(3):324-340. doi: 10.1002/1873-3468.13990. Epub 2020 Nov 22.
Yeast impact homolog 1 (Yih1), or IMPACT in mammals, is part of a conserved regulatory module controlling the activity of General Control Nonderepressible 2 (Gcn2), a protein kinase that regulates protein synthesis. Yih1/IMPACT is implicated not only in many essential cellular processes, such as neuronal development, immune system regulation and the cell cycle, but also in cancer. Gcn2 must bind to Gcn1 in order to impair the initiation of protein translation. Yih1 hinders this key Gcn1-Gcn2 interaction by binding to Gcn1, thus preventing Gcn2-mediated inhibition of protein synthesis. Here, we solved the structures of the two domains of Saccharomyces cerevisiae Yih1 separately using Nuclear Magnetic Resonance and determined the relative positions of the two domains using a range of biophysical methods. Our findings support a compact structural model of Yih1 in which the residues required for Gcn1 binding are buried in the interface. This model strongly implies that Yih1 undergoes a large conformational rearrangement from a latent closed state to a primed open state to bind Gcn1. Our study provides structural insight into the interactions of Yih1 with partner molecules.
酵母冲击同源物 1(Yih1),或哺乳动物中的 IMPACT,是控制一般控制非诱导 2(Gcn2)活性的保守调节模块的一部分,Gcn2 是一种调节蛋白质合成的蛋白激酶。Yih1/IMPACT 不仅参与许多基本的细胞过程,如神经元发育、免疫系统调节和细胞周期,而且还与癌症有关。Gcn2 必须与 Gcn1 结合才能损害蛋白质翻译的起始。Yih1 通过与 Gcn1 结合来阻碍这一关键的 Gcn1-Gcn2 相互作用,从而阻止 Gcn2 介导的蛋白质合成抑制。在这里,我们使用核磁共振分别单独解析了酿酒酵母 Yih1 的两个结构域,并使用多种生物物理方法确定了两个结构域的相对位置。我们的发现支持了 Yih1 的紧凑结构模型,其中与 Gcn1 结合所需的残基埋藏在界面中。该模型强烈暗示 Yih1 经历了从潜伏的封闭状态到引发的开放状态的构象重排,以结合 Gcn1。我们的研究为 Yih1 与伴侣分子的相互作用提供了结构见解。