WRKY transcription factor - definizione. Che cos'è WRKY transcription factor
Diclib.com
Dizionario ChatGPT
Inserisci una parola o una frase in qualsiasi lingua 👆
Lingua:

Traduzione e analisi delle parole tramite l'intelligenza artificiale ChatGPT

In questa pagina puoi ottenere un'analisi dettagliata di una parola o frase, prodotta utilizzando la migliore tecnologia di intelligenza artificiale fino ad oggi:

  • come viene usata la parola
  • frequenza di utilizzo
  • è usato più spesso nel discorso orale o scritto
  • opzioni di traduzione delle parole
  • esempi di utilizzo (varie frasi con traduzione)
  • etimologia

Cosa (chi) è WRKY transcription factor - definizione


WRKY transcription factor         
  • Phylogenetic tree of WRKY transcription factors from the plant kingdom and beyond.
  • The different groups of WRKY Domains in flowering plants
PROTEINS THAT BIND DNA
User:Cmsc236/sandbox; WRKY transcription factor family; Draft:WRKY Transcription Factor; WRKY Transcription Factor
WRKY transcription factors (pronounced ‘worky’) are proteins that bind DNA. They are transcription factors that regulate many processes in plants and algae (Viridiplantae), such as the responses to biotic and abiotic stresses, senescence, seed dormancy and seed germination and some developmental processesRushton PJ, Somssich IE, Ringler P, Shen QJ: WRKY transcription factors.
Transcription factor II B         
MAMMALIAN PROTEIN FOUND IN HOMO SAPIENS
TFIIB; General transcription factor IIB; GTF2B; TF2B; Tf2b; Transcription Factor IIB; Transcription Factor II B; GTF2B (gene)
Transcription factor II B (TFIIB) is a general transcription factor that is involved in the formation of the RNA polymerase II preinitiation complex (PIC) and aids in stimulating transcription initiation. TFIIB is localised to the nucleus and provides a platform for PIC formation by binding and stabilising the DNA-TBP (TATA-binding protein) complex and by recruiting RNA polymerase II and other transcription factors.
Transcription factor         
  • ''lac'' repressor]] binds its target DNA sequence (gold) in the major groove using a [[helix-turn-helix]] motif. Effector molecule binding (green) occurs in the regulatory domain (labeled).  This triggers an allosteric response mediated by the linker region (labeled).
  • Schematic diagram of the amino acid sequence (amino terminus to the left and carboxylic acid terminus to the right) of a prototypical transcription factor that contains (1) a DNA-binding domain (DBD), (2) signal-sensing domain (SSD), and Activation domain (AD). The order of placement and the number of domains may differ in various types of transcription factors. In addition, the transactivation and signal-sensing functions are frequently contained within the same domain.
  • DNA-binding domains]] of transcription factors
PROTEIN THAT BINDS TO DNA AND REGULATES GENE EXPRESSION BY PROMOTING OR SUPPRESSING TRANSCRIPTION
Transcription factors; Basal factor; Upstream transcription factor; Trans-activator; Upstream binding factor; Upstream stimulatory factors; Promoter factor; TFBS; Gene transcription factor; Sequence-specific DNA-binding factor; Transcription factor protein; Signal-sensing domain; Transactivation factor
In molecular biology, a transcription factor (TF) (or sequence-specific DNA-binding factor) is a protein that controls the rate of transcription of genetic information from DNA to messenger RNA, by binding to a specific DNA sequence. The function of TFs is to regulate—turn on and off—genes in order to make sure that they are expressed in the desired cells at the right time and in the right amount throughout the life of the cell and the organism.