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 Übersetzung für 'carboxyl terminal' von Englisch nach Deutsch
biochem.
carboxyl-terminal {adj} <C-terminal>
C-terminal
Teiltreffer
electr.
protective earth terminal <PE terminal> [Am.] [Can.]
Schutzleiteranschluss {m}
chem.
carboxyl groups
Carboxygruppen {pl}
chem.
carboxyl groups
Carboxylgruppen {pl} [veraltet]
chem.
carboxyl functional group
Carboxylfunktionsgruppe {f} [veraltet]
chem.
carboxyl functional group
Carboxyfunktionsgruppe {f}
chem.
free carboxyl groups
freie Carboxygruppen {pl}
chem.
free carboxyl group
freie Carboxygruppe {f}
chem.
carboxyl functional groups
Carboxyfunktionsgruppen {pl}
chem.
free carboxyl groups
freie Carboxylgruppen {pl} [veraltet]
chem.
free carboxyl group
freie Carboxylgruppe {f} [veraltet]
chem.
carboxyl functional groups
Carboxylfunktionsgruppen {pl} [veraltet]
chem.
carboxyl group <COOH group, -COOH>
Carboxyl-Gruppe {f} [veraltet] <COOH-Gruppe, -COOH>
chem.
carboxyl group <COOH group, -COOH>
Karboxylgruppe {f} <COOH-Gruppe, -COOH>
chem.
carboxyl group <COOH group, -COOH>
Carboxygruppe {f} <COOH-Gruppe, -COOH>
chem.
carboxyl group <COOH group, -COOH>
Carboxylgruppe {f} [veraltet] <COOH-Gruppe, -COOH>
chem.
carboxyl group <COOH group, -COOH>
Carboxy-Gruppe {f} <COOH-Gruppe, -COOH>
biochem.
carboxyl terminus <C terminus>
Carboxyl-Terminus {m} <C-Terminus> [veraltet]
biochem.
carboxyl terminus <C terminus>
Carboxy-Terminus {m} <C-Terminus>
electr.
terminal
Klemme {f}
218
terminal {adj}beschließend
21
21 Übersetzungen
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Anwendungsbeispiele Englisch
  • The catalytic domain has a structure consisting of an eight-stranded α/β barrel that contains the active site, interrupted by a ~70-amino acid calcium-binding domain protruding between β-strand 3 and α-helix 3, and a carboxyl-terminal Greek key β-barrel domain.
  • The carboxyl terminal domain (CTD) of RPB1, the largest subunit of RNA polymerase II, plays an important role in bringing together the machinery necessary for the synthesis and processing of Pol II transcripts.
  • The homology comes from the amino and carboxyl regions of preVP2, a small 21-residue-long domain near the carboxyl terminal of VP3, and similar small ORFs sequences.
  • GRK2 and GRK3 share a carboxyl terminal pleckstrin homology (PH) domain that binds to G protein βγ subunits, and GPCR activation of heterotrimeric G proteins releases this free βγ complex that binds to GRK2/3 to recruit these kinases to the cell membrane precisely at the location of the activated receptor, augmenting GRK activity to regulate the activated receptor.
  • The carboxyl terminal (C) domain is highly variable and is involved in transcriptional activation and assemblage of heterodimers and multimeric protein complexes.

  • Polyglycylation is a form of posttranslational modification of glutamate residues of the carboxyl-terminal region tubulin in certain microtubules (e.g., axonemal) originally discovered in "Paramecium", and later shown in mammalian neurons as well.
  • The enzymatic reaction is catalyzed specifically by the phosphorylated carboxyl-terminal domain (CTD) of RNA polymerase II.
  • In specific terms, Geranylgeranyltransferase (GGTase 1) adds a 20-carbon isoprenoid called a geranylgeranyl group to proteins bearing a CaaX motif: a four-amino acid sequence at the carboxyl terminal of a protein.
  • The peptide coding domains are located in tandem near the carboxyl terminal end of the precursor and are bounded and separated by paired basic amino acid (lysine-arginine) processing sites.
  • The carboxyl-terminal of gamma-lipotropic hormone is identical to the structure of beta-melanophore-stimulating hormone.

  • The CP gene mutation results in the production of ceruloplasmin protein that is unstable or nonfunctional by altering the open reading frame such that the amino acid ligands in the essential carboxyl terminal region are eliminated.
  • Once activated with silver, compound 45 uses its pyridinioalkanoyl groups to covalently modify NCp7, specifically altering cysteines 36 and 49 on the carboxyl-terminal zinc finger.
  • The first step for SR proteins to begin alternative splicing of an RNA transcript is for SR proteins to bind on to the carboxyl-terminal domain (CTD) of the largest subunit of RNA polymerase II.
  • Partial loss of function results in nonsense suppression, in which stop codons are ignored and proteins are abnormally synthesized with carboxyl terminal extensions.
  • In addition to GTPases, the protein kinase GRK1 also known as rhodopsin kinase (RK) has been shown to undergo farnesylation and carboxyl methylation directed by the carboxyl terminal CVLS CaaX box sequence of the protein.

  • All three isoforms (each of which is presumed to function as a homodimer during activation) share a carboxyl-terminal reductase domain homologous to the cytochrome P450 reductase.
  • HMG-CoA reductase is anchored in the membrane of the endoplasmic reticulum, and was long regarded as having seven transmembrane domains, with the active site located in a long carboxyl terminal domain in the cytosol.
  • However, upon transcribing over the poly-A signals on the DNA template, a conformational shift is induced in the RNA polymerase from the proposed loss of associated proteins from its carboxyl terminal domain.
  • Rhodopsin was found to specifically cause a conformational switch in the carboxyl terminal of the Tγ subunit.
  • There are four binding pockets in FTase, which accommodate the last four amino acids on the carboxyl-terminus of a protein.

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