Department of Cell & Systems Biology, University of Toronto, Toronto, Canada.
Department of Molecular Genetics, University of Toronto, Toronto, Canada.
PLoS Genet. 2021 Sep 10;17(9):e1009629. doi: 10.1371/journal.pgen.1009629. eCollection 2021 Sep.
Stochastic signaling dynamics expand living cells' information processing capabilities. An increasing number of studies report that regulators encode information in their pulsatile dynamics. The evolutionary mechanisms that lead to complex signaling dynamics remain uncharacterized, perhaps because key interactions of signaling proteins are encoded in intrinsically disordered regions (IDRs), whose evolution is difficult to analyze. Here we focused on the IDR that controls the stochastic pulsing dynamics of Crz1, a transcription factor in fungi downstream of the widely conserved calcium signaling pathway. We find that Crz1 IDRs from anciently diverged fungi can all respond transiently to calcium stress; however, only Crz1 IDRs from the Saccharomyces clade support pulsatility, encode extra information, and rescue fitness in competition assays, while the Crz1 IDRs from distantly related fungi do none of the three. On the other hand, we find that Crz1 pulsing is conserved in the distantly related fungi, consistent with the evolutionary model of stabilizing selection on the signaling phenotype. Further, we show that a calcineurin docking site in a specific part of the IDRs appears to be sufficient for pulsing and show evidence for a beneficial increase in the relative calcineurin affinity of this docking site. We propose that evolutionary flexibility of functionally divergent IDRs underlies the conservation of stochastic signaling by stabilizing selection.
随机信号动力学扩展了活细胞的信息处理能力。越来越多的研究报告表明,调节剂以脉冲动力学的形式编码信息。导致复杂信号动力学的进化机制尚不清楚,这也许是因为信号蛋白的关键相互作用编码在固有无序区域(IDR)中,其进化难以分析。在这里,我们专注于控制真菌中 Crz1 转录因子随机脉冲动力学的 IDR,Crz1 是广泛保守的钙信号通路下游的一个转录因子。我们发现,来自古老分化真菌的 Crz1 IDR 都可以对钙胁迫做出短暂响应;然而,只有来自酿酒酵母分支的 Crz1 IDR 支持脉冲性、编码额外信息并在竞争实验中挽救适应性,而来自亲缘关系较远的真菌的 Crz1 IDR 则不具备这三个功能。另一方面,我们发现 Crz1 的脉冲性在亲缘关系较远的真菌中是保守的,这与信号表型的稳定选择进化模型一致。此外,我们表明 IDR 特定部分中的钙调神经磷酸酶结合位点似乎足以产生脉冲性,并为该结合位点的钙调神经磷酸酶亲和力的有益增加提供了证据。我们提出,功能上不同的 IDR 的进化灵活性是通过稳定选择来维持随机信号的基础。