Showing results (11-20 of 4,630) with videos related to
Sort By:
Pageof 463
Nature Cell Biology|June 17, 2022
The intrinsically disordered region from PP2C phosphatases functions as a conserved CO2 sensorMao Zhang, Cheng Zhu, Yuanyuan Duan, et al.Molecular and Cellular Biology|June 17, 2009
Hyphal chain formation in Candida albicans: Cdc28-Hgc1 phosphorylation of Efg1 represses cell separation genesAllen Wang, Prashna Pala Raniga, Shelley Lane, et al.International Journal of Medical Microbiology : IJMM|November 28, 2002
Co-regulation of pathogenesis with dimorphism and phenotypic switching in Candida albicans, a commensal and a pathogenHaoping LiuCurrent Genetics|May 26, 2018
Hyphal development in Candida albicans from different cell statesChang Su, Jing Yu, Yang LuEukaryotic Cell|December 13, 2002
Hyphal tip-associated localization of Cdc42 is F-actin dependent in Candida albicansIdit Hazan, Haoping LiuMolecular Microbiology|April 3, 2015
The WOR1 5' untranslated region regulates white-opaque switching in Candida albicans by reducing translational efficiencyZhiyun Guan, Haoping LiuEukaryotic Cell|April 12, 2015
Overlapping Functions between SWR1 Deletion and H3K56 Acetylation in Candida albicansZhiyun Guan, Haoping LiuEukaryotic Cell|September 8, 2009
Mss11, a transcriptional activator, is required for hyphal development in Candida albicansChang Su, Yandong Li, Yang Lu, et al.Antimicrobial Agents and Chemotherapy|November 10, 2020
Efg1 and Cas5 Orchestrate Cell Wall Damage Response to Caspofungin in Candida albicansKang Xiong, Chang Su, Qiangqiang Sun, et al.Plos Pathogens|November 1, 2008
The antimicrobial peptide histatin-5 causes a spatially restricted disruption on the Candida albicans surface, allowing rapid entry of the peptide into the cytoplasmA Brian Mochon, Haoping LiuPageof 463