| Literature DB >> 34552981 |
Aga Syed Sameer1,2, Saniya Nissar2,3.
Abstract
Toll-like receptors (TLRs) are the important mediators of inflammatory pathways in the gut which play a major role in mediating the immune responses towards a wide variety of pathogen-derived ligands and link adaptive immunity with the innate immunity. Numerous studies in different populations across the continents have reported on the significant roles of TLR gene polymorphisms in modulating the risk of colorectal cancer (CRC). CRC is one of the major malignancies affecting the worldwide population and is currently ranking the third most common cancer in the world. In this review, we have attempted to discuss the structure, functions, and signaling of TLRs in comprehensive detail together with the role played by various TLR gene SNPs in CRC susceptibility.Entities:
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Year: 2021 PMID: 34552981 PMCID: PMC8452412 DOI: 10.1155/2021/1157023
Source DB: PubMed Journal: Biomed Res Int Impact factor: 3.411
Figure 1A comparative structure of TLR and IL-R.
Characteristics of different human TLRs.
| TLR member | TLR expression | TLR coreceptor | Gene & its location | Origin | TLR active form | Signaling adaptors |
|---|---|---|---|---|---|---|
| TLR1 | Cell membrane | TLR2 |
| Nonviral | TLR1-TLR2 | BCAP, TIRAP, MyD88, SCIMP |
| TLR2 | Cell membrane | TLR1, 2, 6 & 10 |
| Nonviral | TLR1-TLR2 | BCAP, TIRAP, MyD88, SCIMP |
| TLR3 | Endoplasmic reticulum, lysosomal membrane | CD14, Mex3B |
| Viral | TLR3-TLR3 | SARM, SCIMP, TRIF, TICAM1 |
| TLR4 | Cell membrane, endoplasmic reticulum, lysosomal membrane | MD2, LY96, CD14, CD36, LBP, RP105 |
| Nonviral | TLR4/MD2-TLR4/MD2 | BCAP, TIRAP, MyD88, SARM, SCIMP, TICAM1, TICAM2 |
| TLR5 | Cell membrane |
| Nonviral | TLR5-TLR5 | MyD88, TICAM1 | |
| TLR6 | Cell membrane | TLR2, CD36, LBP |
| Nonviral | TLR2-TLR6 | BCAP, TIRAP, MyD88, SCIMP |
| TLR7 | Cell membrane, endoplasmic reticulum, lysosomal membrane | CD14 |
| Viral | TLR7-TLR7 | MyD88 |
| TLR8 | Endoplasmic reticulum, lysosomal membrane |
| Viral | TLR8-TLR8 | MyD88 | |
| TLR9 | Endoplasmic reticulum, lysosomal membrane | CD14 |
| Viral | TLR9-TLR9 | TIRAP, MyD88, SCIMP |
| TLR10 | Cell membrane, endoplasmic reticulum, lysosomal membrane |
| Nonviral | TLR1-TLR10 | MyD88 |
References: Akira et al.,[29, 53]; West et al.[20]; Takeuchi and Akira, [18]; Chang, [52]; Takeda K, Akira, [31]; Gay and Gangloff, [63]; El-Zayat et al., [35, 46].
Figure 2Detection of PAMPs by various TLRs.
TLR recognition of microbial components.
| Origin | Exogenous | Endogenous | ||||
|---|---|---|---|---|---|---|
| Pathogen | Bacteria | Fungus | Parasites | Viruses | Synthetic compounds | Host |
| Derivatives | LPS | Zymosan | tGPI-mutin | DNA | Bropirimine | Heat-shock protein 60, 70 |
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| TLR recognition |
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References: Akira et al., [29, 53]; West et al., [20]; Takeuchi and Akira, [18]; Chang, [52]; Takeda K, Akira, [31]; Gay and Gangloff, [63]; El-Zayat et al., [35, 46].
Figure 3Dynamics of the toll-like receptor signaling.
Figure 4The two faces of the TLR signaling in carcinogenesis.
Summary of various TLR SNPs reported in colorectal cancer susceptibility.
| Gene | Location | SNP | Major/minor allele |
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| 4q32 |
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| rs1898830 | A/G | ||
| rs4696483 | C/T | ||
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| rs7656411 | T/G | ||
| rs5743704 | C/A | ||
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| 4q35 |
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| rs3775290 | A/G | ||
| rs3775291 | G/A | ||
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| 9q32-q33 | rs10759932 | T/C |
| rs1927911 | C/T | ||
| rs5030728 | G/A | ||
| rs11536898 | C/A | ||
| rs12377632 | T/C | ||
| rs11536889 | G/C | ||
| rs1554973 | T/C | ||
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| 1q41 | rs5743836 | A/G |
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| 3p21.2 |
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References: El-Omar et al., [21]; Chang, [52]; Trejo-de la et al., [19]; Skevaki et al., [94]; Mukherjee et al., [89].
Summary of therapeutics targeting TLRs in CRC.
| Compound | Target TLRs | Drug | Clinical phase |
|---|---|---|---|
| BCG | TLR2/4 | Synthetic ssRNA | Phase I |
| MPL | TLR4 | Synthetic ssRNA | Phase I |
| CBLB502 | TLR5 | Flagellin | Phase I |
| Imiquimod | TLR7 | Small molecule ssRNA | Phase I/II/III |
| IMO2055 | TLR9 | CpG oligonucleotide | Phase I/II |
| MGN1703 | TLR9 | dSLIM | Phase II |
References: Hennessy et al.,[130]; Gambara et al.,[129]; Vacchelli et al., [131]; Kaczanowska et al.,[124]; Moossavi et al., [125]; Li et al., [23]; Pradere et al., [74]; Gao et al., [51]; Braunstein et al.,[122].