Department of Laboratory Medicine, Ruijin Hospital, Shanghai Jiaotong University School of Medicine, No.197 Ruijin ER Road, Shanghai, 200025, China.
Institute of Respiratory Diseases, Longhua Hospital, Shanghai University of Traditional Chinese Medicine, No.725 South Wanping Road, Shanghai, 200032, China.
BMC Microbiol. 2023 Oct 28;23(1):317. doi: 10.1186/s12866-023-03069-4.
Candida glabrata which belongs to normal microbiota, has caused significant concern worldwide due to its high prevalence and drug resistance in recent years. C. glabrata has developed many strategies to evade the clearance of the host immune system, thereby causing persistent infection. Although coping with the induced DNA damage is widely acknowledged to be important, the underlying mechanisms remain unclear.
The present study provides hitherto undocumented evidence of the importance of the regulatory subunits of CgCK2 (CgCkb1 and CgCkb2) in response to DNA damage. Deletion of CgCKB1 or CgCKB2 enhanced cellular apoptosis and DNA breaks and led to cell cycle delay. In addition, deficiencies in survival upon phagocytosis were observed in Δckb1 and Δckb2 strains. Consistently, disruption of CgCKB1 and CgCKB2 attenuated the virulence of C. glabrata in mouse models of invasive candidiasis. Furthermore, global transcriptional profiling analysis revealed that CgCkb1 and CgCkb2 participate in cell cycle resumption and genomic stability.
Overall, our findings suggest that the response to DNA damage stress is crucial for C. glabrata to survive in macrophages, leading to full virulence in vivo. The significance of this work lies in providing a better understanding of pathogenicity in C. glabrata-related candidiasis and expanding ideas for clinical therapies.
光滑念珠菌属于正常菌群,但近年来其在全球的高流行率和耐药性引起了人们的高度关注。光滑念珠菌已经发展出许多策略来逃避宿主免疫系统的清除,从而导致持续性感染。尽管人们普遍认为应对诱导性 DNA 损伤很重要,但其中的机制仍不清楚。
本研究提供了迄今为止未被记录的证据,证明了 CgCK2 的调节亚基(CgCkb1 和 CgCkb2)在应对 DNA 损伤时的重要性。CgCKB1 或 CgCKB2 的缺失增强了细胞凋亡和 DNA 断裂,并导致细胞周期延迟。此外,在 Δckb1 和 Δckb2 菌株中观察到吞噬作用后的生存缺陷。一致地,CgCKB1 和 CgCKB2 的破坏削弱了光滑念珠菌在侵袭性念珠菌病小鼠模型中的毒力。此外,全基因组转录谱分析表明,CgCkb1 和 CgCkb2 参与细胞周期恢复和基因组稳定性。
总的来说,我们的研究结果表明,对 DNA 损伤应激的反应对于光滑念珠菌在巨噬细胞中存活至关重要,从而导致体内完全的毒力。这项工作的意义在于提供了对与念珠菌相关的念珠菌病中致病性的更好理解,并为临床治疗提供了思路。