نتایج جستجو برای: periplasm

تعداد نتایج: 3548  

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2007
Richard F Collins Konstantinos Beis Changjiang Dong Catherine H Botting Catherine McDonnell Robert C Ford Bradley R Clarke Chris Whitfield James H Naismith

Capsular polysaccharides (CPSs) are essential virulence determinants of many pathogenic bacteria. Escherichia coli group 1 CPSs provide paradigms for widespread surface polysaccharide assembly systems in Gram-negative bacteria. In these systems, complex carbohydrate polymers must be exported across the periplasm and outer membrane to the cell surface. Group 1 CPS export requires oligomers of th...

Journal: :The EMBO journal 1999
S Jonda M Huber-Wunderlich R Glockshuber E Mössner

The thiol/disulfide oxidoreductase DsbA is the strongest oxidant of the thioredoxin superfamily and is required for efficient disulfide bond formation in the periplasm of Escherichia coli. To determine the importance of the redox potential of the final oxidant in periplasmic protein folding, we have investigated the ability of the most reducing thiol/disulfide oxidoreductase, E.coli thioredoxin...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2005
Damon Huber Myoung-Il Cha Laurent Debarbieux Anne-Gaëlle Planson Nelly Cruz Gary López María Luisa Tasayco Alain Chaffotte Jon Beckwith

Escherichia coli thioredoxin is normally a cytoplasmic protein involved in the reduction of disulfide bonds. However, thioredoxin can be translocated to the periplasm when it is attached to a cotranslational signal sequence. When exported to the periplasm, it can partially replace the activity of DsbA in promoting the formation of disulfide bonds. In contrast, when thioredoxin is fused to a pos...

2015
Anne Durand Asma Azzouzi Marie-Line Bourbon Anne-Soisig Steunou Sylviane Liotenberg Akinori Maeshima Chantal Astier Manuela Argentini Shingo Saito Soufian Ouchane

UNLABELLED In the absence of a tight control of copper entrance into cells, bacteria have evolved different systems to control copper concentration within the cytoplasm and the periplasm. Central to these systems, the Cu(+) ATPase CopA plays a major role in copper tolerance and translocates copper from the cytoplasm to the periplasm. The fate of copper in the periplasm varies among species. Cop...

Journal: :Journal of bacteriology 1976
J D Kowit W N Choy S P Champe A L Goldberg

Pacaud and Uriel described an enzyme from Escherichia coli ("protease I") that hydrolyzes acetyl phenylalanine naphthyl ester (APNE). We examined the possible involvement of this enzyme in intracellular protein degradation, its subcellular distribution, and its proteolytic activity. Although the APNE-hydrolyzing activity is localized primarily in the periplasm, proteolytic activity against case...

2017
Thomas Gundinger Oliver Spadiut

Horseradish peroxidase (HRP) is used in various biotechnological and medical applications. Since its isolation from plant provides several disadvantages, the bacterium Escherichia coli was tested as recombinant expression host in former studies. However, neither production from refolded inclusion bodies nor active enzyme expression in the periplasm exceeded final titres of 10mg per litre cultiv...

Journal: :Journal of bacteriology 2010
Aurélie Barnéoud-Arnoulet Marthe Gavioli Roland Lloubès Eric Cascales

Colicins are bacterial antibiotic toxins produced by Escherichia coli cells and are active against E. coli and closely related strains. To penetrate the target cell, colicins bind to an outer membrane receptor at the cell surface and then translocate their N-terminal domain through the outer membrane and the periplasm. Once fully translocated, the N-terminal domain triggers entry of the catalyt...

Journal: :Cell 2003
Jason C Young F.Ulrich Hartl

DegS, the periplasmic stress sensor, becomes activated when its PDZ domain recognizes the improperly exposed C-terminal sequences of outer membrane porins. This interaction relieves the inhibition of the neighboring protease domain of DegS, triggering a proteolysis cascade that leads to the sigma(E)-driven expression of periplasmic chaperones.

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