AbstractWe have investigated the effect on the substrate requirements for guinea pig liver (tissue) transglutaminase of a set of 11 synthetic glutamine substitution analogues making up the full sequence of the naturally occurring tissue transglutaminase substrate substance P. While a number of peptide sequences derived from proteins that are well-recognized as tissue transglutaminase substrates have been studied, the enzyme activity using substitution analogues of full-length natural substrates has not been investigated as thoroughly. Thus, our set of substance P analogues only differs from one to other by one amino acid mutation while the length (of the peptide) is maintained as in the natural parent peptide. Our results indicate that a gl...
To investigate possible biochemical mechanisms underlying the "toxic gain of function" associated wi...
The in vitro metabolism of transglutaminase-synthesized substance P analogs has been characterized c...
Subunit T of the native muscle troponin complex is a recognised substrate of transglutaminase both i...
AbstractWe have investigated the effect on the substrate requirements for guinea pig liver (tissue) ...
Transglutaminase is an enzyme which catalyzes the Ca++-activated incorporation of amines into protei...
The specificity of guinea pig liver transglutamlnase was Investigated by the determination of modif...
AbstractThree peptides corresponding to glycine-rich internal sequences of the guinea pig liver tran...
Transglutaminases catalyze transglutamination reactions on glutamines. Transglutaminases are largely...
Tissue transglutaminase (tTGase) catalyzes both deamidation and transamidation of peptides and prote...
Contains fulltext : 29430.pdf (Publisher’s version ) (Open Access
Substance P was found to be an effective acyl donor substrate of transglutaminase in vitro, the reac...
Transglutaminase (TGase, E.C. 2.3.2.13) catalyzes acyl transfer reactions between the gamma-carboxam...
Vasoactive intestinal peptide is an amino acceptor and donor substrate for tissue transglutaminase (...
Transglutaminase from Streptomyces mobaraensis (MTG) has become a powerful tool to covalently and hi...
Transglutaminases are calcium-dependent enzymes that catalyze a post-translational modification of p...
To investigate possible biochemical mechanisms underlying the "toxic gain of function" associated wi...
The in vitro metabolism of transglutaminase-synthesized substance P analogs has been characterized c...
Subunit T of the native muscle troponin complex is a recognised substrate of transglutaminase both i...
AbstractWe have investigated the effect on the substrate requirements for guinea pig liver (tissue) ...
Transglutaminase is an enzyme which catalyzes the Ca++-activated incorporation of amines into protei...
The specificity of guinea pig liver transglutamlnase was Investigated by the determination of modif...
AbstractThree peptides corresponding to glycine-rich internal sequences of the guinea pig liver tran...
Transglutaminases catalyze transglutamination reactions on glutamines. Transglutaminases are largely...
Tissue transglutaminase (tTGase) catalyzes both deamidation and transamidation of peptides and prote...
Contains fulltext : 29430.pdf (Publisher’s version ) (Open Access
Substance P was found to be an effective acyl donor substrate of transglutaminase in vitro, the reac...
Transglutaminase (TGase, E.C. 2.3.2.13) catalyzes acyl transfer reactions between the gamma-carboxam...
Vasoactive intestinal peptide is an amino acceptor and donor substrate for tissue transglutaminase (...
Transglutaminase from Streptomyces mobaraensis (MTG) has become a powerful tool to covalently and hi...
Transglutaminases are calcium-dependent enzymes that catalyze a post-translational modification of p...
To investigate possible biochemical mechanisms underlying the "toxic gain of function" associated wi...
The in vitro metabolism of transglutaminase-synthesized substance P analogs has been characterized c...
Subunit T of the native muscle troponin complex is a recognised substrate of transglutaminase both i...