Riley Eammon P, Lyda Jelani A, Reyes-Matte Octavio, Sugie Joseph, Kasu Iqra R, Enustun Eray, Armbruster Emily, Ravishankar Sumedha, Isaacson Rivka L, Camp Amy H, Lopez-Garrido Javier, Pogliano Kit
bioRxiv. 2024 Nov 26:2024.11.26.625531. doi: 10.1101/2024.11.26.625531.
sporulation entails a dramatic transformation of the two cells required to assemble a dormant spore, with the larger mother cell engulfing the smaller forespore to produce the cell-within-a-cell structure that is a hallmark of endospore formation. Sporulation also entails metabolic differentiation, whereby key metabolic enzymes are depleted from the forespore but maintained in the mother cell. This reduces the metabolic potential of the forespore, which becomes dependent on mother-cell metabolism and the SpoIIQ-SpoIIIA channel to obtain metabolic building blocks necessary for development. We demonstrate that metabolic differentiation depends on the ClpCP protease and a forespore-produced protein encoded by the gene, which we have renamed MdfA (metabolic differentiation factor A). MdfA is conserved in aerobic endospore-formers and required for spore resistance to hypochlorite. Using mass spectrometry and quantitative fluorescence microscopy, we show that MdfA mediates the depletion of dozens of metabolic enzymes and key transcription factors from the forespore. An accompanying study by Massoni, Evans and collaborators demonstrates that MdfA is a ClpC adaptor protein that directly interacts with and stimulates ClpCP activity. Together, these results document a developmentally-regulated proteolytic pathway that reshapes forespore metabolism, reinforces differentiation, and is required to produce spores resistant to the oxidant hypochlorite.
芽孢形成需要对组装休眠孢子所需的两个细胞进行显著转变,较大的母细胞吞噬较小的前芽孢,以产生细胞内细胞结构,这是芽孢形成的一个标志。芽孢形成还需要代谢分化,即关键代谢酶从前芽孢中耗尽,但保留在母细胞中。这降低了前芽孢的代谢潜力,前芽孢变得依赖母细胞代谢和SpoIIQ-SpoIIIA通道来获取发育所需的代谢构件。我们证明代谢分化依赖于ClpCP蛋白酶和由该基因编码的一种前芽孢产生的蛋白质,我们将其重新命名为MdfA(代谢分化因子A)。MdfA在需氧芽孢形成菌中保守,是孢子对次氯酸盐抗性所必需的。使用质谱和定量荧光显微镜,我们表明MdfA介导了数十种代谢酶和关键转录因子从前芽孢中的耗尽。Massoni、Evans及其合作者的一项伴随研究表明,MdfA是一种ClpC衔接蛋白,可直接与ClpCP相互作用并刺激其活性。总之,这些结果记录了一条发育调控的蛋白水解途径,该途径重塑前芽孢代谢、加强分化,并且是产生对氧化剂次氯酸盐有抗性的孢子所必需的。