Results 261 to 270 of about 26,046,637 (294)
Some of the next articles are maybe not open access.
Analysis of Type III Secretion System Secreted Proteins
2016Secreted proteins of the T3SS vary from genus to genus. How secretion is induced in vitro also depends on the genus of bacteria. However, once those proteins are isolated the method for analyzing those proteins is largely the same. The following chapter outlines the specific induction of Yersinia secreted proteins and uniform analysis of those secreted
Danielle L Jessen, Condry +1 more
openaire +2 more sources
Expression and Secretion Hierarchy in the Nonflagellar Type III Secretion System
Future Microbiology, 2011Type III secretion systems that deliver bacterial proteins into eukaryotic cells are the basis for both symbiotic and pathogenic relationships between many Gram-negative bacteria and their hosts. Exploration of the structure, function and assembly of this secretion system has greatly enhanced our knowledge of bacterial ecology in the context of ...
Suzanne E, Osborne, Brian K, Coombes
openaire +2 more sources
A Unified Nomenclature for Injectisome-Type Type III Secretion Systems
2020The independent naming of components of injectisome-type type III secretion systems in different bacterial species has resulted in considerable confusion, impeding accessibility of the literature and hindering communication between scientists of the same field. A unified nomenclature had been proposed by Hueck more than 20 years ago.
Wagner, S., Diepold, A.
openaire +3 more sources
Lactoferrin disruption of bacterial type III secretion systems
Biometals, 2004Many gram-negative bacteria share a closely related mechanism for secretion of virulence proteins. This complex machine, the type III secretion system, secretes virulence proteins in response to sensing the presence of target mammalian cells. We have found that recombinant human lactoferrin impairs the function of this system in two model organisms ...
Therese J, Ochoa, Thomas G, Clearly
openaire +2 more sources
The Type III Secretion System Sorting Platform
2019A central feature of type III protein secretion machines is their ability to engage their substrates in a hierarchical and organized fashion. The hierarchy in the secretion process is first observed during the assembly of the type III secretion injectisome when the secretion machine exclusively engages proteins required for building the needle complex ...
openaire +2 more sources
The type III secretion system tip complex and translocon
Molecular Microbiology, 2008SummaryThe type III secretion machinery of Gram‐negative bacteria, also known as the injectisome or needle complex, is composed of a basal body spanning both bacterial membranes and the periplasm, and an external needle protruding from the bacterial surface.
Mueller, C. A. +2 more
openaire +4 more sources
Identification of the Targets of Type III Secretion System Inhibitors
2016A type III secretion system (T3SS) Inhibitor can be utilized for study in the research lab but also progressed into drug development. Since many pathogenic Gram-negative bacteria utilize this highly conserved system as a virulence factor, the prospect of the T3SS as a drug target is promising.
Danielle L Jessen, Condry +1 more
openaire +2 more sources
Trends in Genetics, 2001
The bacterial type III secretion pathway delivers effector proteins into eukaryotic cells. Analysis of the type III system and flagellar export genes in the obligate parasites of the family Chlamydiales suggests that the type III system arose from the flagellar export system in chlamydiae or related bacteria.
openaire +2 more sources
The bacterial type III secretion pathway delivers effector proteins into eukaryotic cells. Analysis of the type III system and flagellar export genes in the obligate parasites of the family Chlamydiales suggests that the type III system arose from the flagellar export system in chlamydiae or related bacteria.
openaire +2 more sources
[Progress in type III secretion system].
Wei sheng wu xue bao = Acta microbiologica Sinica, 2009Many Gram-negative bacteria use the type III secretion system (TTSS) to inject toxin proteins into host cells, then cause the plague disease, typhoid fever, diarrhea disease etc. Chaperone proteins is one of four components of MTSS and play an important role in helping the secretion of toxin proteins.
Li, Wang +4 more
openaire +1 more source
Detecting Immune Responses to Type III Secretion Systems
2016Measuring immune responses against type III secretion and related molecules has been made easier with the advent of reporter cell lines. For example, the THP-1-XBlue and HEK-Blue cells from InvivoGen provide easy detection of gene activation under NF-kB and AP-1 control.
Peter L, Knopick, David S, Bradley
openaire +2 more sources

