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Receptor-independent Ambient pH Signaling by Ubiquitin Attachment to Fungal Arrestin-like PalF

机译:受体无关的环境pH信号通过泛素附着于真菌诱导的Palf

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The seven-transmembrane receptor PalH and its coupled, positive-acting arrestin-like protein PalF are key components of a molecular sensor that in Aspergillus nidulans and other ascomycete fungi mediates activation of an intracellular signaling cascade by alkaline ambient pH. PalF is ubiquitinated in an alkaline pH- and PalH-dependent manner. We show here that PalF assists the plasma membrane localization of PalH and that PalF overexpression slightly hypersensitizes the pathway to alkaline pH but does not bypass the need for the ambient pH signal receptor in signaling. In contrast, covalent attachment of Ub to PalF activates the signaling pathway under acidic pH conditions in which the pathway is normally inactive, demonstrating a positive role for ubiquitination. We further show that PalF acts upstream of, or in concert with, the Bro1 domain-containing pH signaling protein PalC, which is normally recruited to cortical structures likely to represent active pH signaling foci under neutral/alkaline pH conditions. In agreement with its pathway-activating consequences, expression of PalF-Ub also promotes PalC cortical recruitment under acidic conditions. Notably, our data establish that expression of PalF-Ub, at approximately physiological levels, in a null palH background leads to a considerable degree of signaling even in the complete absence of the receptor. Thus PalF ubiquitination is a key, perhaps the sole, molecular trigger required for transmitting the alkaline pH signal to the downstream elements of the pathway.
机译:七跨膜受体Palh及其偶联的阳性诱导蛋白PALF是分子传感器的关键组分,即在Aspergillus Nidulans和其他Ascomycete真菌中介导通过碱性环境pH激活细胞内信号传导级联的激活。 PALF以碱性pH-和PALH依赖性方式占据普遍存在。我们在这里展示PALF助攻PALH的血浆膜定位,并且PALF过表达略微过度敏感到碱性pH的途径,但不能绕过信号传导中的环境pH信号受体。相反,UB对PALF的共价附着在酸性pH条件下激活信号通路,其中途径通常是无活性的,证明泛素化的积极作用。我们进一步表明,PALF在含Bro1域的pH信号传导蛋白PALC上游或含有音乐会的pH-信号蛋白PALC,该蛋白质pALC通常募集到可能在中性/碱性pH条件下代表活性pH信号灶的皮质结构。在达到其途径激活后果的情况下,PALF-UB的表达还促进了酸性条件下的PALC皮质招募。值得注意的是,我们的数据建立了PALF-UB在近似生理水平的表达,即使在完全没有受体的情况下,即使在完全没有受体的情况下也能够相当多程度的信号传导。因此,PALF泛素是钥匙,也许是唯一的分子触发,用于将碱性pH信号发送到通路的下游元件。

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