Two strategies of metabolic engineering have been used, individually or combined, to alter the metabolic flux to improve the production of S-adenosyl-L-methionine (SAM) in Pichia pastoris. One is over expressing SAM synthase by knock-in technique, the other is the disruption of cystathionine-P synthase (CBS) by knock-out technique. Strain Gsam with ectopic SAM synthase gene produced 20 times of SAM comparing to the starter strain GS115. Disruption of CBS in GS115 only doubled its SAM production. However, disruption of CBS in Gsam results in a robust increase of SAM production, more than 56 times of the strain GS115. Thus, we report for the first time a synergistic effect on the production of SAM in yeast by the combination of knock-in and k...
Recent reports have shown that oligochitosan elicitors can elicit multiple resistance response in pl...
Cilj ovog rada je bio ispitati mogućnost proizvodnje S-adenozil-L-metionina (SAMe) pomoću kvasca Pic...
Graduation date: 1965The terminal reactions in the biosynthetic pathway of methionine\ud in Saccharo...
S-adenosyl-L-methionine (SAM, SAMe; AdoMet) is an important methyl donor in many reactions, and rece...
This study sought to develop a cost-effective biological catalysis process for S-adenosyl-L-methioni...
The present invention makes use of a chimeric gene that, when incorporated into an appropriate host,...
S-Adenosylmethionine (SAM) is an important molecule for normal cell functions, it is involved in a n...
Candida albicans is a dimorphic fungus exhibiting either a budding yeast or hyphal phase. A shift fr...
Abstract approved Redacted for Privacy ajor professor) Studies were carried out to elucidate the mec...
Pichia pastoris, a methylotrophic yeast, is an established system for the production of heterologous...
With the ever-increasing demand for proteins, the production host, including its metabolism, moves i...
Process techniques of the methylotrophic yeast Pichia pastoris for the production and recovery of he...
Background: The yeast Komagataella phaffii, better known as Pichia pastoris, is a commonly used host...
Abstract Methionine synthase (MS) is grouped into two classes. Class One MS (MetH) and Class Two MS ...
S-Adenosylmethionine (SAM) synthetases isolated from both the yeast and hyphal-phase of the dimorphi...
Recent reports have shown that oligochitosan elicitors can elicit multiple resistance response in pl...
Cilj ovog rada je bio ispitati mogućnost proizvodnje S-adenozil-L-metionina (SAMe) pomoću kvasca Pic...
Graduation date: 1965The terminal reactions in the biosynthetic pathway of methionine\ud in Saccharo...
S-adenosyl-L-methionine (SAM, SAMe; AdoMet) is an important methyl donor in many reactions, and rece...
This study sought to develop a cost-effective biological catalysis process for S-adenosyl-L-methioni...
The present invention makes use of a chimeric gene that, when incorporated into an appropriate host,...
S-Adenosylmethionine (SAM) is an important molecule for normal cell functions, it is involved in a n...
Candida albicans is a dimorphic fungus exhibiting either a budding yeast or hyphal phase. A shift fr...
Abstract approved Redacted for Privacy ajor professor) Studies were carried out to elucidate the mec...
Pichia pastoris, a methylotrophic yeast, is an established system for the production of heterologous...
With the ever-increasing demand for proteins, the production host, including its metabolism, moves i...
Process techniques of the methylotrophic yeast Pichia pastoris for the production and recovery of he...
Background: The yeast Komagataella phaffii, better known as Pichia pastoris, is a commonly used host...
Abstract Methionine synthase (MS) is grouped into two classes. Class One MS (MetH) and Class Two MS ...
S-Adenosylmethionine (SAM) synthetases isolated from both the yeast and hyphal-phase of the dimorphi...
Recent reports have shown that oligochitosan elicitors can elicit multiple resistance response in pl...
Cilj ovog rada je bio ispitati mogućnost proizvodnje S-adenozil-L-metionina (SAMe) pomoću kvasca Pic...
Graduation date: 1965The terminal reactions in the biosynthetic pathway of methionine\ud in Saccharo...