Soluble components of the flagellar export apparatus, FliI, FliJ, and FliH, do not deliver flagellin, the major filament protein, from the cytosol to the export gate☆
-
Add time:08/23/2019 Source:sciencedirect.com
Flagella, the locomotion organelles of bacteria, extend from the cytoplasm to the cell exterior. External flagellar proteins are synthesized in the cytoplasm and exported by the flagellar type III secretion system. Soluble components of the flagellar export apparatus, FliI, FliH, and FliJ, have been implicated to carry late export substrates in complex with their cognate chaperones from the cytoplasm to the export gate. The importance of the soluble components in the delivery of the three minor late substrates FlgK, FlgL (hook–filament junction) and FliD (filament-cap) has been convincingly demonstrated, but their role in the transport of the major filament component flagellin (FliC) is still unclear.We have used continuous ATPase activity measurements and quartz crystal microbalance (QCM) studies to characterize interactions between the soluble export components and flagellin or the FliC:FliS substrate–chaperone complex. As controls, interactions between soluble export component pairs were characterized providing Kd values. FliC or FliC:FliS did not influence the ATPase activity of FliI alone or in complex with FliH and/or FliJ suggesting lack of interaction in solution. Immobilized FliI, FliH, or FliJ did not interact with FliC or FliC:FliS detected by QCM. The lack of interaction in the fluid phase between FliC or FliC:FliS and the soluble export components, in particular with the ATPase FliI, suggests that cells use different mechanisms for the export of late minor substrates, and the major substrate, FliC. It seems that the abundantly produced flagellin does not require the assistance of the soluble export components to efficiently reach the export gate.
We also recommend Trading Suppliers and Manufacturers of fliH protein (cas 138414-67-2). Pls Click Website Link as below: cas 138414-67-2 suppliers
Prev:PaperQuantification of pertussis toxin, filamentous haemagglutinin, 69 kDa outer membrane protein, agglutinogens 2 and 3 and lipopolysaccharide in the Danish whole-cell pertussis vaccine
Next:Intrinsic Membrane Targeting of the Flagellar Export ATPase FliI: Interaction with Acidic Phospholipids and FliH) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- ATP-induced FliI hexamerization facilitates bacterial flagellar protein export09/01/2019
- ReviewProtein export through the bacterial flagellar type III export pathway☆08/31/2019
- ArticleStructural Insights into the Substrate Specificity Switch Mechanism of the Type III Protein Export Apparatus08/30/2019
- Short communicationConstruction, expression, purification and antigenicity of recombinant Campylobacter jejuni flagellar proteins08/29/2019
- Role of the N-terminal domain of FliI ATPase in bacterial flagellar protein export08/28/2019
- Short communicationFliH and FliI of Borrelia burgdorferi are similar to flagellar and virulence factor export proteins of other bacteria08/27/2019
- Regular articleProteolytic analysis of the FliH/FliI complex, the ATPase component of the type III flagellar export apparatus of Salmonella108/26/2019
- Structural Properties of FliH, an ATPase Regulatory Component of the Salmonella Type III Flagellar Export Apparatus08/25/2019
- Intrinsic Membrane Targeting of the Flagellar Export ATPase FliI: Interaction with Acidic Phospholipids and FliH08/24/2019
-
Health and Chemical more >


