STRINGSTRING
GAL4 GAL4 CDR4 CDR4 HAP43 HAP43 RTG3 RTG3 ROB1 ROB1 CaO19.3625 CaO19.3625 CaO19.217 CaO19.217 LYS144 LYS144 ZCF8 ZCF8 ZCF21 ZCF21 ZCF27 ZCF27 CDR3 CDR3 HMS1 HMS1 BRG1 BRG1 FLO8 FLO8 CaO19.6874 CaO19.6874 BCR1 BCR1 SEF1 SEF1 EFG1 EFG1 CZF1 CZF1 AHR1 AHR1 WOR3 WOR3 LYS14 LYS14 NDT80 NDT80 SSN6 SSN6 WOR4 WOR4 CUP9 CUP9 TYE7 TYE7 RFX2 RFX2 WOR2 WOR2 TEC1 TEC1 WOR1 WOR1 SFU1 SFU1 RTG1 RTG1
Nodes:
Network nodes represent proteins
splice isoforms or post-translational modifications are collapsed, i.e. each node represents all the proteins produced by a single, protein-coding gene locus.
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colored nodes:
query proteins and first shell of interactors
white nodes:
second shell of interactors
Node Content
empty nodes:
proteins of unknown 3D structure
filled nodes:
a 3D structure is known or predicted
Edges:
Edges represent protein-protein associations
associations are meant to be specific and meaningful, i.e. proteins jointly contribute to a shared function; this does not necessarily mean they are physically binding to each other.
Known Interactions
from curated databases
experimentally determined
Predicted Interactions
gene neighborhood
gene fusions
gene co-occurrence
Others
textmining
co-expression
protein homology
Your Input:
GAL4Galactose-responsive transcription factor. (261 aa)
CDR4Cdr4p; Belongs to the ABC transporter superfamily. (1490 aa)
HAP43Hap43p. (634 aa)
RTG3Rtg3p. (520 aa)
ROB1Rob1p. (991 aa)
CaO19.3625Uncharacterized protein. (349 aa)
CaO19.217Uncharacterized protein. (379 aa)
LYS144Lys144p. (860 aa)
ZCF8Zcf8p. (915 aa)
ZCF21Zcf21p. (629 aa)
ZCF27Zcf27p. (1196 aa)
CDR3Cdr3p. (406 aa)
HMS1Hms1p. (685 aa)
BRG1Biofilm regulator 1; Transcription factor required for hyphal growth, biofilm formation, and virulence. Promotes formation of both conventional and pheromone-stimulated biofilms. Binds and recruits HDA1 to promoters of hypha-specific genes in a rapamycin-dependent manner. Involved in the switch between two heritable states, the white and opaque states. These two cell types differ in many characteristics, including cell structure, mating competence, and virulence. Each state is heritable for many generations, and switching between states occurs stochastically at low frequency. (422 aa)
FLO8Transcriptional regulator of filamentous growth FLO8; Transcription factor which mediates CO(2) sensing. Required for CO(2)-induced white-to-opaque switching, as well as for filamentous growth and virulence. Required for both normoxic and hypoxic biofilm formation. Hypoxic biofilm formation is a major cause of perseverance and antifungal resistance during infections. (792 aa)
CaO19.6874Uncharacterized protein. (607 aa)
BCR1Biofilm and cell wall regulator 1; Transcription factor which acts as a master regulator of biofilm formation. Biofilms play an important role in pathogenesis and produce many infections such as oropharyngeal candidiasis or vulvovaginal candidiasis. Controls the expression of genes that govern cell-surface properties such as ALS1, ALS3, HWP1 AND HYR1. Down-stream component of the hyphal regulatory network that couples expression of cell-surface genes to hyphal differentiation. (740 aa)
SEF1Transcriptional regulatory protein SEF1; Transcription factor which plays an essential role in virulence by activating the transcription of iron uptake genes such as FRE7 in iron-poor environments such as the host bloodstream and internal organs. Promotes commensalism in a mouse model of gastrointestinal infection. (917 aa)
EFG1Enhanced filamentous growth protein 1; Transcriptional regulator of the switch between 2 heritable states, the white and opaque states. These 2 cell types differ in many characteristics, including cell structure, mating competence, and virulence. Each state is heritable for many generations, and switching between states occurs stochastically, at low frequency. Antagonizes the action of WOR1, WOR2 and CZF1, and promotes the white state. In white cells, EFG1 represses WOR1 indirectly through WOR2 to maintain white cell identity. Binds target gene promoters at the EFG1 recognition sequenc [...] (550 aa)
CZF1Zinc cluster transcription factor CZF1; Transcriptional regulator of the switch between 2 heritable states, the white and opaque states. These 2 cell types differ in many characteristics, including cell structure, mating competence, and virulence. Each state is heritable for many generations, and switching between states occurs stochastically, at low frequency. Contributes to formation of the opaque state, but is not necessary for heritability of the opaque state. Plays a role in cell adhesion and pseudohyphal growth. Involved in acquisition of drug resistance and acts as a repressor o [...] (385 aa)
AHR1Adhesion and hyphal regulator 1; Transcription factor that binds the promoters of genes involved in biofilm formation, which include several key adhesion genes, and recruits MCM1 to these sites. Plays an important role in hyphal growth and virulence. Promotes conversion of opaque cells to white phase, but needs existence of EFG1, a key regulator required for maintenance of the white state. (624 aa)
WOR3White-opaque regulator 3; Transcription factor that modulates the white-opaque switch. (641 aa)
LYS14Lys14p. (592 aa)
NDT80Transcription factor. (504 aa)
SSN6Transcription regulator. (1080 aa)
WOR4Wor4p. (401 aa)
CUP9Cup9p. (344 aa)
TYE7Carbohydrate metabolism regulator TYE7; Key transcriptional regulator of carbohydrate metabolism. Binds the promoter sequences of the glycolytic genes at the CANNTG motif and activates their expression during growth on either fermentable or non-fermentable carbon sources as well as under hypoxic growth conditions. Complete glycolytic activation by GAL4 and TYE7 is required for full virulence. Involved in biofilm formation and negatively regulates hyphal formation under hypoxia. Controls also the expression of the copper transport protein CTR1. (269 aa)
RFX2RFX-like DNA-binding protein RFX2; Transcriptional repressor which regulates DNA damage responses, morphogenesis, and virulence. Involved in the regulation of filamentous growth through its repression of hyphal-specific genes such as HWP1, ALS3, HYR1, ECE1, and CEK1; Belongs to the RFX family. (1111 aa)
WOR2White-opaque regulator 2; Transcriptional regulator of the switch between 2 heritable states, the white and opaque states. These 2 cell types differ in many characteristics, including cell structure, mating competence, and virulence. Each state is heritable for many generations, and switching between states occurs stochastically, at low frequency. WOR2 is necessary for the stability of the opaque state phenotypic switching from the white to the opaque phase is a necessary step for mating. Plays a role in cell adhesion and pseudohyphal growth. (446 aa)
TEC1Transcription activator TEC1; Transcription factor which regulates genes involved in hyphal development, cell adhesion, biofilm development, and virulence. Plays a role in the formation of 'finger' morphology, a unique multicellular morphology of C.albicans induced by carbon dioxide. Regulates gene expression during intestinal colonization. Required for the expression of the secreted aspartyl proteinases SAP4, SAP5, and SAP6; but also of BCR1, PGA4, and CDC24. Moreover, a positive feedback loop between CDC24 and TEC1 contributes to an increase in active CDC42 at the tip of the germ tub [...] (743 aa)
WOR1White-opaque regulator 1; Master transcriptional regulator of the switch between 2 heritable states, the white and opaque states. These 2 cell types differ in many characteristics, including cell structure, mating competence, and virulence. Each state is heritable for many generations, and switching between states occurs stochastically, at low frequency. WOR1 Binds the intergenic regions upstream of the genes encoding three additional transcriptional regulators of white-opaque switching, CZF1, EFG1, and WOR2. Phenotypic switching from the white to the opaque phase is a necessary step f [...] (785 aa)
SFU1Suppressor of ferric uptake 1; Transcriptional regulator of iron-responsive genes. Represses expression of SEF1 and genes for iron uptake if iron is present. Plays also a transcription-independent role in the direct inhibition of SEF1 function through protein complex formation and translocation to the cytoplasm, where SEF1 is destabilized. Promotes gastrointestinal commensalism in mice. (517 aa)
RTG1Rtg1p. (274 aa)
Your Current Organism:
Candida albicans
NCBI taxonomy Id: 237561
Other names: C. albicans SC5314, Candida albicans SC5314
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