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Title: | Emergence of Dip2-mediated Specific DAG-based PKC Signalling Axis in Eukaryotes |
Authors: | Shambhavi, Sakshi Mondal, Sudipta CHAKRABORTY, ARNAB Shukla, Nikita Panda, Bapin K. Kumar, Santhosh Kinatukara, Priyadarshan Pal, Biswajit KAMAT, SIDDHESH S. Sankaranarayanan, Rajan Dept. of Biology |
Keywords: | Diacylglycerols (DAGs) TOC-JAN-2025 2025 |
Issue Date: | Jan-2025 |
Publisher: | eLife Sciences Publications Ltd. |
Citation: | Cell Biology |
Abstract: | Diacylglycerols (DAGs) are used for metabolic purposes and are tightly regulated secondary lipid messengers in eukaryotes. DAG subspecies with different fatty-acyl chains are proposed to be involved in the activation of distinct PKC isoforms, resulting in diverse physiological outcomes. However, the molecular players and the regulatory origin for fine-tuning the PKC pathway are unknown. Here, we show that Dip2, a conserved DAG regulator across Fungi and Animalia, has emerged as a modulator of PKC signalling in yeast. Dip2 maintains the level of a specific DAG subpopulation, required for the activation of PKC-mediated cell wall integrity pathway. Interestingly, the canonical DAG-metabolism pathways, being promiscuous, are decoupled from PKC signalling. We demonstrate that these DAG subspecies are sourced from a phosphatidylinositol pool generated by the acyl-chain remodelling pathway. Furthermore, we provide insights into the intimate coevolutionary relationship between the regulator (Dip2) and the effector (PKC) of DAG-based signalling. Hence, our study underscores the establishment of Dip2-PKC axis about 1.2 billion years ago in Opisthokonta, which marks the rooting of the first specific DAG-based signalling module of eukaryotes. |
URI: | https://doi.org/10.7554/eLife.104011.1 http://dr.iiserpune.ac.in:8080/xmlui/handle/123456789/9304 |
ISSN: | 2050-084X |
Appears in Collections: | JOURNAL ARTICLES |
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