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URA3 | Orotidine 5'-phosphate decarboxylase; Belongs to the OMP decarboxylase family. (270 aa) | ||||
TUP1 | Transcriptional repressor TUP1; Represses transcription by RNA polymerase II. Represses genes responsible for initiating filamentous growth such as HWP1, RBT1, RBT2, RBT4, RBT5, RBT7 and WAP1; and this repression is lifted under inducing environmental conditions. Represses also genes which participate in pathogenesis. Crucial component of the response to farnesol. Plays an important role in the regulation of white-opaque switching. (512 aa) | ||||
MAL2 | Oligo-1,6-glucosidase IMA1. (570 aa) | ||||
SGE1 | Sge1p. (627 aa) | ||||
TCC1 | Tcc1p. (748 aa) | ||||
WH11 | Wh11p. (65 aa) | ||||
TAF14 | TATA-binding protein-associated factor. (263 aa) | ||||
OP4 | Op4p. (404 aa) | ||||
WOR2 | White-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) | ||||
WOR3 | White-opaque regulator 3; Transcription factor that modulates the white-opaque switch. (641 aa) | ||||
CZF1 | Zinc 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) | ||||
EFG1 | Enhanced 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) | ||||
SMT3 | SUMO family protein. (102 aa) | ||||
ARG4 | Argininosuccinate lyase. (468 aa) | ||||
HIS3 | Imidazoleglycerol-phosphate dehydratase; Belongs to the imidazoleglycerol-phosphate dehydratase family. (222 aa) | ||||
TRP1 | N-(5'-phosphoribosyl)anthranilate isomerase; Belongs to the TrpF family. (226 aa) | ||||
NHP6 | Non-histone chromosomal protein 6; DNA-binding protein that induces severe bending of DNA. Required for DNA-binding by the FACT complex, a general chromatin factor that acts to reorganize nucleosomes. The FACT complex is involved in multiple processes that require DNA as a template such as mRNA elongation, DNA replication and DNA repair. Also augments the fidelity of transcription by RNA polymerase III independently of any role in the FACT complex (By similarity). (92 aa) | ||||
MET3 | Sulfate adenylyltransferase; Catalyzes the first intracellular reaction of sulfate assimilation, forming adenosine-5'-phosphosulfate (APS) from inorganic sulfate and ATP. Plays an important role in sulfate activation as a component of the biosynthesis pathway of sulfur-containing amino acids. Belongs to the sulfate adenylyltransferase family. (527 aa) | ||||
CDC28 | Cyclin-dependent kinase 1; Cyclin-dependent kinase essential for the completion of the start, the controlling event, in the cell cycle. Plays a role in the expression of morphology-related transcription factors, and especially hyphae-specific genes. Binds distinct cyclin subunits as cells progress through the division cycle or flamentous growth. The CDC28-CLB2 complex regulates cytokinesis partly by phosphorylating the actomyosin ring component IQG1. The CDC28-CLN3 complex phosphorylates SLA1 which regulates cortical actin patch dynamics. The CDC28-CCN1 complex phosphorylates CDC11 and [...] (317 aa) | ||||
ADE2 | Phosphoribosylaminoimidazole carboxylase; In the C-terminal section; belongs to the AIR carboxylase family. Class I subfamily. (568 aa) | ||||
CTA8 | Heat shock transcription factor; DNA-binding protein that specifically binds heat shock promoter elements (HSE) and activates transcription. With HSP90, is required for the modulation of the chaperone levels in response to growth temperature, rather than the activation of acute responses to sudden thermal transitions. Activated during infection and contributes to full virulence. Belongs to the HSF family. (760 aa) | ||||
HSP90 | Heat shock protein 90 homolog; Molecular chaperone that promotes the maturation, structural maintenance and proper regulation of specific target proteins involved for instance in cell cycle control and signal transduction. Undergoes a functional cycle that is linked to its ATPase activity. This cycle probably induces conformational changes in the client proteins, thereby causing their activation. Interacts dynamically with various co- chaperones that modulate its substrate recognition, ATPase cycle and chaperone function (By similarity); Belongs to the heat shock protein 90 family. (707 aa) | ||||
WOR1 | White-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) |