| Reference | Species | Other Genes Addressed |
|---|---|---|
| Pradhan A, et al. (2025) Protein kinase A signaling regulates immune evasion by shaving and concealing fungal beta-1,3-glucan. Proc Natl Acad Sci U S A 122(24):e2423864122 CGD Papers Entry Pubmed Entry | C. albicans | |CAG1 |ENG1 |GPR1 |MNN2 |TPK1 |TPK2 |XOG1 |YWP1 |
| Avelar GM, et al. (2022) Impact of changes at the Candida albicans cell surface upon immunogenicity and colonisation in the gastrointestinal tract. Cell Surf 8:100084 CGD Papers Entry Pubmed Entry | C. albicans | |GPR1 |
| Glazier VE (2022) EFG1, Everyone's Favorite Gene in Candida albicans: A Comprehensive Literature Review. Front Cell Infect Microbiol 12:855229 CGD Papers Entry Pubmed Entry | C. albicans | |BCY1 |CYR1 |CZF1 |DCK1 |EFG1 |GPR1 |HSP90 |MEP2 |NCE103 |NGT1 |RAC1 |RAS1 |RIM101 |RIM13 |MORE |
| Fu C, et al. (2021) Leveraging machine learning essentiality predictions and chemogenomic interactions to identify antifungal targets. Nat Commun 12(1):6497 CGD Papers Entry Pubmed Entry Web Supplement Data | C. albicans | |AAF1 |ACC1 |ACT1 |ADAEC |ADE4 |ADH2 |ADR1 |AEP1 |AEP3 |AFT2 |AHA1 |AKL1 |ALS4 |ALS6 |MORE |
| Brenes LR, et al. (2020) A Set of Diverse Genes Influence the Frequency of White-Opaque Switching in Candida albicans. G3 (Bethesda) CGD Papers Entry Pubmed Entry | C. albicans | |C1_14200W_A |C3_00570C_A |C4_02720C_A |CCN1 |CEK1 |CHT2 |CIP1 |CR_06450W_A |CTA9 |DCK1 |ECE1 |HSL1 |HWP1 |IFF6 |MORE |
| Chen H, et al. (2020) The regulation of hyphae growth in Candida albicans Virulence 11:337-348 CGD Papers Entry Pubmed Entry | C. albicans | |BCY1 |CDC24 |CDC42 |CEK1 |CEK2 |CST20 |CYR1 |DCK1 |EFG1 |GPR1 |HSP90 |LMO1 |MEP2 |NCE103 |MORE |
| Pradhan A, et al. (2019) Non-canonical signalling mediates changes in fungal cell wall PAMPs that drive immune evasion. Nat Commun 10(1):5315 CGD Papers Entry Pubmed Entry | C. albicans | |CYR1 |FTR1 |GOA1 |GPR1 |SEF1 |SFU1 |SOD1 |SOD2 |SOD3 |TPK1 |TPK2 |
| Rutherford JC, et al. (2019) Nutrient and Stress Sensing in Pathogenic Yeasts. Front Microbiol 10:442 CGD Papers Entry Pubmed Entry | C. albicans | |GAP1 |GAP2 |GAP6 |GPR1 |HGT4 |MEP2 |RGT1 |STD1 |TOR1 |
| Van Ende M, et al. (2019) Sugar Sensing and Signaling in Candida albicans and Candida glabrata. Front Microbiol 10:99 CGD Papers Entry Pubmed Entry | C. glabrata | |MIG1 |SNF1 |SNF3 |
| C. albicans | |GPR1 |HGT12 |HGT2 |HGT4 |MIG1 |SNF1 | |
| Azadmanesh J, et al. (2017) Filamentation Involves Two Overlapping, but Distinct, Programs of Filamentation in the Pathogenic Fungus Candida albicans. G3 (Bethesda) 7(11):3797-3808 CGD Papers Entry Pubmed Entry Web Supplement Data | C. albicans | |C4_00610W_A |C4_04090C_A |C6_02740W_A |COX4 |CR_03430W_A |IRE1 |KEX2 |KRE5 |NEO1 |PEP8 |PHR1 |RFG1 |RIM101 |SNF4 |MORE |
| Subotic A, et al. (2017) A Bimolecular Fluorescence Complementation Tool for Identification of Protein-Protein Interactions in Candida albicans. G3 (Bethesda) 7(10):3509-3520 CGD Papers Entry Pubmed Entry | C. albicans | |BCY1 |GPR1 |KIS1 |SNF4 |TPK1 |TPK2 |
| Ballou ER, et al. (2016) Lactate signalling regulates fungal beta-glucan masking and immune evasion. Nat Microbiol 2:16238 CGD Papers Entry Pubmed Entry | C. albicans | |ACE2 |CRH11 |CRH12 |CRZ1 |EXG2 |GPR1 |MNN14 |MNN22 |PGA26 |UTR2 |
| Gil-Bona A, et al. (2015) Candida albicans cell shaving uncovers new proteins involved in cell wall integrity, yeast to hypha transition, stress response and host-pathogen interaction. J Proteomics 127(Pt B):340-351 CGD Papers Entry Pubmed Entry Reference LINKOUT Web Supplement Data | C. albicans | |ACT1 |ADE1 |ADE12 |ADE13 |ADE17 |ADE5,7 |ADH1 |ADH2 |AGE3 |AGM1 |AHA1 |AHP1 |AIP2 |ALI1 |MORE |
| Schwartz JA, et al. (2013) Regulation of copper toxicity by Candida albicans GPA2. Eukaryot Cell 12(7):954-61 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |CRD2 |CRD2 |CTR1 |CTR1 |FRE7 |FRE7 |
| Gow NA, et al. (2011) Candida albicans morphogenesis and host defence: discriminating invasion from colonization. Nat Rev Microbiol 10(2):112-22 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |ALS3 |ALS3 |BCY1 |BCY1 |CCN1 |CCN1 |CDC11 |CDC11 |CDC28 |CDC28 |CPH1 |CPH1 |CYR1 |CYR1 |MORE |
| Han TL, et al. (2011) The metabolic basis of Candida albicans morphogenesis and quorum sensing. Fungal Genet Biol 48(8):747-63 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |ACH1 |ACH1 |ACS2 |ACS2 |ALO1 |ALO1 |ALS1 |ALS1 |ATC1 |ATC1 |BCY1 |BCY1 |BEM3 |BEM3 |MORE |
| Hogan DA and Muhlschlegel FA (2011) Candida albicans developmental regulation: adenylyl cyclase as a coincidence detector of parallel signals. Curr Opin Microbiol 14(6):682-6 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |BCR1 |BCR1 |CYR1 |CYR1 |EFG1 |EFG1 |NRG1 |NRG1 |RAS1 |RAS1 |SRV2 |SRV2 |TEC1 |TEC1 |MORE |
| Shapiro RS, et al. (2011) Regulatory circuitry governing fungal development, drug resistance, and disease. Microbiol Mol Biol Rev 75(2):213-67 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |ACE2 |ACE2 |ADA2 |ADA2 |ALS1 |ALS1 |BCK1 |BCK1 |CDC28 |CDC28 |CDC42 |CDC42 |CDC5 |CDC5 |MORE |
| C. glabrata | |FKS1 |FKS2 | |
| Wilson D, et al. (2010) Candida albicans Pde1p and Gpa2p comprise a regulatory module mediating agonist-induced cAMP signalling and environmental adaptation. Fungal Genet Biol 47(9):742-52 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |GPR1 |GPR1 |PDE1 |PDE1 |PDE2 |PDE2 |
| Cottier F and Muhlschlegel FA (2009) Sensing the environment: response of Candida albicans to the X factor. FEMS Microbiol Lett 295(1):1-9 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |ACE2 |ACE2 |AQY1 |AQY1 |BUD2 |BUD2 |CAG1 |CAG1 |CAN1 |CAN1 |CCH1 |CCH1 |CEK1 |CEK1 |MORE |
| Van Dijck P (2009) Nutrient sensing G protein-coupled receptors: interesting targets for antifungals? Med Mycol 47(7):671-80 CGD Papers Entry Pubmed Entry | C. albicans | |C3_05900W_A |GPR1 |GPR1 |TPS2 |TPS2 |orf19.7370 |
| Biswas S, et al. (2007) Environmental sensing and signal transduction pathways regulating morphopathogenic determinants of Candida albicans. Microbiol Mol Biol Rev 71(2):348-76 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |ALS1 |ALS1 |BCY1 |BCY1 |BUD2 |BUD2 |CDC4 |CDC4 |CDC42 |CDC42 |CEK1 |CEK1 |CLB2 |CLB2 |MORE |
| Bennett RJ and Johnson AD (2006) The role of nutrient regulation and the Gpa2 protein in the mating pheromone response of C. albicans. Mol Microbiol 62(1):100-19 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |ABP2 |ABP2 |ASG7 |ASG7 |ASR3 |ASR3 |AVT4 |AVT4 |AVT7 |AVT7 |AXL1 |AXL1 |BNI1 |BNI1 |MORE |
| Brown V, et al. (2006) A glucose sensor in Candida albicans. Eukaryot Cell 5(10):1726-37 CGD Papers Entry Pubmed Entry Reference LINKOUT Web Supplement Data | C. albicans | |AOX2 |AOX2 |ARO9 |ARO9 |C2_06890C_A |C6_03620C_A |C7_03740C_A |CMK1 |CMK1 |DOG1 |DOG1 |EBP7 |EBP7 |GAL1 |MORE |
| Biswas K and Morschhauser J (2005) The Mep2p ammonium permease controls nitrogen starvation-induced filamentous growth in Candida albicans. Mol Microbiol 56(3):649-69 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |C1_07210C_A |CPH1 |CPH1 |CYR1 |CYR1 |EFG1 |EFG1 |MEP1 |MEP1 |MEP2 |MEP2 |RAS1 |RAS1 |TEC1 |MORE |
| Braun BR, et al. (2005) A human-curated annotation of the Candida albicans genome. PLoS Genet 1(1):36-57 CGD Papers Entry Pubmed Entry | C. albicans | |AAP1 |AAP1 |ABZ1 |ABZ1 |ACF2 |ACF2 |ACH1 |ACH1 |ADE1 |ADE1 |ADE2 |ADE2 |ADH2 |ADH2 |MORE |
| Kumamoto CA and Vinces MD (2005) Alternative Candida albicans lifestyles: growth on surfaces. Annu Rev Microbiol 59:113-33 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |ACE2 |ACE2 |BMH1 |BMH1 |CDR1 |CDR1 |CDR2 |CDR2 |CEK1 |CEK1 |CHK1 |CHK1 |CPH1 |CPH1 |MORE |
| Maidan MM, et al. (2005) The G protein-coupled receptor Gpr1 and the Galpha protein Gpa2 act through the cAMP-protein kinase A pathway to induce morphogenesis in Candida albicans. Mol Biol Cell 16(4):1971-86 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |CSC25 |EFG1 |EFG1 |GPR1 |GPR1 |HST7 |HST7 |RAS1 |TPK1 |TPK1 |TPK2 |TPK2 |
| Miwa T, et al. (2004) Gpr1, a putative G-protein-coupled receptor, regulates morphogenesis and hypha formation in the pathogenic fungus Candida albicans. Eukaryot Cell 3(4):919-31 CGD Papers Entry Pubmed Entry Reference LINKOUT | C. albicans | |ECE1 |ECE1 |GPR1 |GPR1 |HWP1 |HWP1 |
| Dhillon NK, et al. (2003) Signaling through protein kinases and transcriptional regulators in Candida albicans. Crit Rev Microbiol 29(3):259-75 CGD Papers Entry Pubmed Entry | C. albicans | |ALS1 |ALS1 |ALS2 |ALS2 |ALS3 |ALS3 |BCY1 |BCY1 |CBK1 |CBK1 |CCN1 |CCN1 |CDC28 |CDC28 |MORE |