نتایج جستجو برای: kluyveromyces lactis

تعداد نتایج: 6251  

Journal: :Applied and environmental microbiology 1999
C Compagno F Boschi A Daleffe D Porro B M Ranzi

Lack of triose phosphate isomerase activity (TIM) is of special interest because this enzyme works at an important branch point of glycolytic flux. In this paper, we report the cloning and sequencing of the Kluyveromyces lactis gene encoding TIM. Unlike Saccharomyces cerevisiae DeltaTPI1 mutants, the K. lactis mutant strain was found to be able to grow on glucose. Preliminary bioconversion expe...

2000
Emilina D. Simova Ginka I. Frengova Dora M. Beshkova

Exopolysaccharides from the lactose-negative yeast Rhodotorula glutinis 16P were synthe­ sized by co-cultivation with the yeast Kluyveromyces lactis MP11 or with the homofermentative lactic acid bacteria Lactobacillus helveticus 9A in a cheese whey ultrafiltrate. Exopoly­ saccharides were produced by lactose hydrolysis, performed by two pathways: with ß-galactosidase from Kluyveromyces lactis M...

Journal: :Food and chemical toxicology : an international journal published for the British Industrial Biological Research Association 2000
T M Coenen A M Bertens S C de Hoog C M Verspeek-Rip

Neutralact(R), the DSM brand name of a lactase enzyme preparation, obtained from a homologous rDNA strain of Kluyveromyces lactis, was subjected to a series of toxicological tests to document the safety for use as a processing aid in the dairy industry. The enzyme preparation was examined for subacute oral toxicity and mutagenic potential. As a result of these tests, no evidence of oral toxicit...

Journal: :Yeast 2004
Jaana H Toikkanen Lena Sundqvist Sirkka Keränen

The SEB1/SBH1 and the SSO genes encode components of the protein secretory machinery functioning at the opposite ends, ER translocation and exocytosis, respectively, of the secretory pathway in Saccharomyces cerevisiae. Overexpression of these genes can rescue temperature-sensitive (ts) growth defect of many sec mutants impaired in protein secretion. Furthermore, their overexpression in wild-ty...

Journal: :Fungal genetics and biology : FG & B 2000
R Schaffrath K D Breunig

With the recent development of powerful molecular genetic tools, Kluyveromyces lactis has become an excellent alternative yeast model organism for studying the relationships between genetics and physiology. In particular, comparative yeast research has been providing insights into the strikingly different physiological strategies that are reflected by dominance of respiration over fermentation ...

Journal: :International journal of systematic and evolutionary microbiology 2000
C Belloch A Querol M D García E Barrio

A phylogenetic analysis of 17 species belonging to the genus Kluyveromyces and 12 reference and outgroup species was performed using mitochondrial cytochrome-c oxidase II gene sequences. The genus Kluyveromyces appears as a polyphyletic taxon formed by species included within the following four main groups. The Kluyveromyces phaffii group encompasses the species Kluyveromyces blattae, K. phaffi...

Journal: :Applied and Environmental Microbiology 1993

2013
Janaína T. de Faria Pollyana F. Rocha Attilio Converti Flávia M.L. Passos Luis A. Minim Fábio C. Sampaio

The aim of our study was to select the optimal operating conditions to permeabilize Kluyveromyces lactis cells using ethanol as a solvent as an alternative to cell disruption and extraction. Cell permeabilization was carried out by a non-mechanical method consisting of chemical treatment with ethanol, and the results were expressed as β-galactosidase activity. Experiments were conducted under d...

2017
Guorong Zhang Min Lu Jichao Wang Dongmei Wang Xiaolian Gao Jiong Hong

In yeast, the hexose assimilation is started at hexose phosphorylation. However, in Kluyveromyces marxianus, the hexokinase (HXK) and glucokinase (GLK) genes were not identified by experiments. Meanwhile, the glucose-free fructose product requires more cost-efficient method. In this study, the KmHXK1 and KmGLK1 genes were functionally identified through gene disruption, over-expression and reco...

Journal: :Journal of Biological Chemistry 2003

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