Yu Chengxuan, Xu Xiaoli, Shi Jia, Chu Wenqing, Jiang Na, Li Jianqiang, Luo Laixin
State Key Laboratory of Agricultural and Forestry Biosecurity, MARA Key Laboratory of Surveillance and Management for Plant Quarantine Pests, Beijing Key Laboratory of Seed Disease Testing and Control, College of Plant Protection, China Agricultural University, Beijing 100193, China.
Cell Surf. 2025 Aug 26;14:100151. doi: 10.1016/j.tcsw.2025.100151. eCollection 2025 Dec.
CmWag31 is a member of the DivIVA family of proteins in . The DivIVA family have been demonstrated to play a key role in the synthesis of cell wall peptidoglycan and cell division in most bacterial species. It has been previously confirmed that the C (penicillin-binding protein C) deletion mutants affect bacterial division and cell wall synthesis. Based on the confirmation of the interaction between CmWag31 and CmPBPC, the present study conducted a systemic analysis on their localization characteristics. The results indicated that CmWag31 exhibited the capacity to interact with the transglycosylase (TG) and transpeptidase (TP) domain of CmPBPC, while CmPBPC only interacted with the NTD region of CmWag31. Co-localization analysis showed that CmWag31 co-localized with CmPBPC at the bacterial growth tips of and . The mutation of R19A, R19C, A99T, and A102T of CmWag31 resulted in abnormal localization in . In the case of the CmWag31 protein exhibited a diffuse localization, which is a departure from the polar localization of its wild type. The co-localization of the CmWag31 mutation with CmPBPC exhibited discrepancies between and . The diffused localization of CmWag31 can be restored by overexpression of CmPBPC in , yet this restoration is not observed in . This result indicates that CmPBPC from may not fully excute their function in due to species-specific differences.
CmWag31是[具体物种]中DivIVA蛋白家族的一员。在大多数细菌物种中,DivIVA家族已被证明在细胞壁肽聚糖合成和细胞分裂中起关键作用。先前已证实C(青霉素结合蛋白C)缺失突变体影响细菌分裂和细胞壁合成。基于对CmWag31和CmPBPC之间相互作用的确认,本研究对它们的定位特征进行了系统分析。结果表明,CmWag31具有与CmPBPC的转糖基酶(TG)和转肽酶(TP)结构域相互作用的能力,而CmPBPC仅与CmWag31的NTD区域相互作用。共定位分析表明,CmWag31与CmPBPC在[具体物种1]和[具体物种2]的细菌生长尖端共定位。CmWag31的R19A、R19C、A99T和A102T突变导致[具体物种1]中的定位异常。在[具体物种2]的情况下,CmWag31蛋白表现出弥散定位,这与其野生型的极性定位不同。CmWag31突变体与CmPBPC的共定位在[具体物种1]和[具体物种2]之间存在差异。在[具体物种1]中,CmPBPC的过表达可恢复CmWag31的弥散定位,但在[具体物种2]中未观察到这种恢复。这一结果表明,由于物种特异性差异,来自[具体物种1]的CmPBPC在[具体物种2]中可能无法充分发挥其功能。