Welcome to our blog!
We will be discussing the structural mechanism of how the
Toll-like receptor 5 protein binds to FliC, the monomeric protein responsible
for the formation of the bacterial flagellar filament.
Please click on the GIFs to view a larger version.
TLRs
The Toll-like receptor protein family are transmembrane
proteins involved in pathogen recognition and signaling of the innate immune
system. Primarily found on the surface of macrophages and dendritic cells, their
horseshoe-shaped, leucine-rich repeat ectodomains bind to conserved pathogen identifiers
(such as lipoproteins, RNA and cell wall peptidoglycans) and initiate an
inflammation response. The family of proteins received their name when a
researcher exclaimed “Das ist ja toll!” or “That’s great!” upon discovery of
underdeveloped fruit fly larvae due to mutations in the gene. (1)
TLR5
This protein is a highly conserved germ-line (2) encoded
protein found across vertebrates and is the only protein binding TLR to be conserved
from fish to mammals. The agonist of the TLR5 receptor is the bacterial
flagella, to which binding leads to recruitment of the MyD88, a critical adaptor of
the innate immune system, and the activation of NF-κB, a proinflammatory
transcription factor. (3) This will result in the activation of an inflammatory
response targeting the flagellated bacteria.
TLR5 is of clinical importance as inflammation and tissue repair has been linked with the development of cancer and TLRs are often highly expressed in tumour cells as the NF-κB factor has an anti-apoptotic effect. (4)
Zebrafish TLR5 was used in this structural study as it was the only ortholog successfully expressed.
Zebrafish TLR5 was used in this structural study as it was the only ortholog successfully expressed.
TLR5-Flic Binding
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| Figure A. TLR5-FliC Binding overview |
TLR5 binds to the monomeric form of flagellin (FliC in Salmonella), a protein found in a wide variety of gram-negative pathogens, to form a 1:1 heterodimer. Two heterodimers can then associate and form a symmetrical 2:2 tetrameric signaling complex. The binding interfaces and arrangements of the tetramer are completely different from other TLR-ligand interactions, but the two C-terminals of the TLR5 proteins are still placed in close proximity upon flagellin binding, a signaling analogous to other TLRs.

Love the GIF- the assembly of the complex is very clear and I like how the GIF shows the different stages! Very clear, concise explanation.
ReplyDeleteThe GIF is great, and with clear explanation. It would be nice to have a sentence or two more introducing the function of TLRs. The text is very informative, but maybe would be better flowing if some shorter sentences were used.
ReplyDeleteEasy to grasp the objective of the paper through this webpage. Good use of GIFs, images and subdivisions.
ReplyDelete