SrcA is a chaperone for the Salmonella SPI-2 type three secretion system effector SteD
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Author(s)
Godlee, camilla
Cerny, ondrej
durkin, charlotte
Holden, david
Type
Journal Article
Abstract
Effector proteins of type three secretion systems (T3SS) often require cytosolic chaperones for their stabilization, to interact with the secretion machinery and to enable effector delivery into host cells. We found that deletion of srcA, previously shown to encode a chaperone for the Salmonella pathogenicity island 2 (SPI-2) T3SS effectors SseL and PipB2, prevented the reduction of mature Major Histocompatibility Complex class II (mMHCII) from the surface of antigen-presenting cells during Salmonella infection. This activity was shown previously to be caused by the SPI-2 T3SS effector SteD. Since srcA and steD are located in the same operon on the Salmonella chromosome, this suggested that the srcA phenotype might be due to an indirect effect on SteD. We found that SrcA is not translocated by the SPI-2 T3SS but interacts directly and forms a stable complex with SteD in bacteria with a 2 : 1 stoichiometry. We found that SrcA was not required for SPI-2 T3SS-dependent, neutral pH-induced secretion of either SseL or PipB2 but was essential for secretion of SteD. SrcA therefore functions as a chaperone for SteD, explaining its requirement for the reduction in surface levels of mMHCII.
Date Issued
2019-01-01
Date Acceptance
2018-09-20
Citation
Microbiology, 2019, 165, pp.15-25
ISSN
1350-0872
Publisher
Microbiology Society
Start Page
15
End Page
25
Journal / Book Title
Microbiology
Volume
165
Copyright Statement
© 2018 The Authors This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited (https://creativecommons.org/licenses/by/3.0/).
License URL
Subjects
Salmonella
chaperone
effector
type III secretion system
MD Multidisciplinary
Microbiology
Publication Status
Published
Date Publish Online
2018-11-20