Jung Sook-In, Rodriguez Natalie, Irrizary Jihyun, Liboro Karl, Bogarin Thania, Macias Marlene, Eivers Edward, Porter Edith, Filler Scott G, Park Hyunsook
Division of Infectious Diseases, Chonnam National University Medical School, Gwangju, South Korea.
Department of Biological Sciences, California State University, Los Angeles, Los Angeles, California, United States of America.
PLoS One. 2017 Nov 6;12(11):e0187721. doi: 10.1371/journal.pone.0187721. eCollection 2017.
The regulatory networks governing morphogenesis of a pleomorphic fungus, Candida albicans are extremely complex and remain to be completely elucidated. This study investigated the function of C. albicans yeast casein kinase 2 (CaYck2p). The yck2Δ/yck2Δ strain displayed constitutive pseudohyphae in both yeast and hyphal growth conditions, and formed enhanced biofilm under non-biofilm inducing condition. This finding was further supported by gene expression analysis of the yck2Δ/yck2Δ strain which showed significant upregulation of UME6, a key transcriptional regulator of hyphal transition and biofilm formation, and cell wall protein genes ALS3, HWP1, and SUN41, all of which are associated with morphogenesis and biofilm architecture. The yck2Δ/yck2Δ strain was hypersensitive to cell wall damaging agents and had increased compensatory chitin deposition in the cell wall accompanied by an upregulation of the expression of the chitin synthase genes, CHS2, CHS3, and CHS8. Absence of CaYck2p also affected fungal-host interaction; the yck2Δ/yck2Δ strain had significantly reduced ability to damage host cells. However, the yck2Δ/yck2Δ strain had wild-type susceptibility to cyclosporine and FK506, suggesting that CaYck2p functions independently from the Ca+/calcineurin pathway. Thus, in C. albicans, Yck2p is a multifunctional kinase that governs morphogenesis, biofilm formation, cell wall integrity, and host cell interactions.
调控多形真菌白色念珠菌形态发生的调控网络极为复杂,仍有待完全阐明。本研究调查了白色念珠菌酵母酪蛋白激酶2(CaYck2p)的功能。yck2Δ/yck2Δ菌株在酵母和菌丝生长条件下均呈现组成型假菌丝,并在非生物膜诱导条件下形成增强的生物膜。yck2Δ/yck2Δ菌株的基因表达分析进一步支持了这一发现,该分析显示菌丝转变和生物膜形成的关键转录调节因子UME6以及细胞壁蛋白基因ALS3、HWP1和SUN41均显著上调,所有这些基因都与形态发生和生物膜结构相关。yck2Δ/yck2Δ菌株对细胞壁损伤剂高度敏感,细胞壁中补偿性几丁质沉积增加,同时几丁质合酶基因CHS2、CHS3和CHS8的表达上调。CaYck2p的缺失也影响真菌与宿主的相互作用;yck2Δ/yck2Δ菌株损伤宿主细胞的能力显著降低。然而,yck2Δ/yck2Δ菌株对环孢素和FK506具有野生型敏感性,这表明CaYck2p独立于Ca+/钙调神经磷酸酶途径发挥作用。因此,在白色念珠菌中,Yck2p是一种多功能激酶,可调控形态发生、生物膜形成、细胞壁完整性和宿主细胞相互作用。