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FRQ 与其核心生物钟转录激活因子 WCC 在 Neurospora 中的相互作用所必需的结构域。

Domains required for the interaction of the central negative element FRQ with its transcriptional activator WCC within the core circadian clock of Neurospora.

机构信息

Department of Molecular and Systems Biology, Geisel School of Medicine at Dartmouth, Hanover, New Hampshire, USA.

Department of Molecular and Systems Biology, Geisel School of Medicine at Dartmouth, Hanover, New Hampshire, USA.

出版信息

J Biol Chem. 2023 Jul;299(7):104850. doi: 10.1016/j.jbc.2023.104850. Epub 2023 May 21.

Abstract

In the negative feedback loop composing the Neurospora circadian clock, the core element, FREQUENCY (FRQ), binds with FRQ-interacting RNA helicase (FRH) and casein kinase 1 to form the FRQ-FRH complex (FFC) which represses its own expression by interacting with and promoting phosphorylation of its transcriptional activators White Collar-1 (WC-1) and WC-2 (together forming the White Collar complex, WCC). Physical interaction between FFC and WCC is a prerequisite for the repressive phosphorylations, and although the motif on WCC needed for this interaction is known, the reciprocal recognition motif(s) on FRQ remains poorly defined. To address this, we assessed FFC-WCC in a series of frq segmental-deletion mutants, confirming that multiple dispersed regions on FRQ are necessary for its interaction with WCC. Biochemical analysis shows that interaction between FFC and WCC but not within FFC or WCC can be disrupted by high salt, suggesting that electrostatic forces drive the association of the two complexes. As a basic sequence on WC-1 was previously identified as a key motif for WCC-FFC assembly, our mutagenetic analysis targeted negatively charged residues of FRQ, leading to identification of three Asp/Glu clusters in FRQ that are indispensable for FFC-WCC formation. Surprisingly, in several frq Asp/Glu-to-Ala mutants that vastly diminish FFC-WCC interaction, the core clock still oscillates robustly with an essentially wildtype period, indicating that the interaction between the positive and negative elements in the feedback loop is required for the operation of the circadian clock but is not a determinant of the period length.

摘要

在构成 Neurospora 生物钟的负反馈回路中,核心元件 FREQUENCY(FRQ)与 FRQ 相互作用的 RNA 解旋酶(FRH)和酪蛋白激酶 1 结合,形成 FRQ-FRH 复合物(FFC),通过与转录激活因子 White Collar-1(WC-1)和 WC-2(共同形成 White Collar 复合物,WCC)相互作用并促进其磷酸化来抑制自身表达。FFC 和 WCC 之间的物理相互作用是抑制磷酸化的前提条件,尽管已知 WCC 上用于这种相互作用的模体,但 FRQ 上的互补识别模体仍未明确定义。为了解决这个问题,我们在一系列 frq 分段缺失突变体中评估了 FFC-WCC,证实 FRQ 上的多个分散区域对于其与 WCC 的相互作用是必需的。生化分析表明,FFC 和 WCC 之间的相互作用(而不是 FFC 或 WCC 内的相互作用)可以被高盐破坏,这表明静电相互作用力驱动两个复合物的结合。由于之前已经确定 WC-1 上的一个基本序列是 WCC-FFC 组装的关键模体,因此我们的突变分析针对 FRQ 上带负电荷的残基,导致鉴定出 FRQ 中三个 Asp/Glu 簇对于 FFC-WCC 形成是不可或缺的。令人惊讶的是,在几个大大减少 FFC-WCC 相互作用的 frq Asp/Glu-to-Ala 突变体中,核心时钟仍然以基本野生型周期强烈振荡,这表明反馈回路中正负元件之间的相互作用是生物钟运行所必需的,但不是周期长度的决定因素。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a4ef/10320511/1678f386638c/gr1.jpg

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