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September 8, 2011PLoS Pathogens141 citationsOpen Access

Disruption of TLR3 Signaling Due to Cleavage of TRIF by the Hepatitis A Virus Protease-Polymerase Processing Intermediate, 3CD

LQLin QuUniversity of North Carolina at Chapel HillZFZongdi FengUniversity of North Carolina at Chapel HillDYDaisuke YamaneTokyo Metropolitan Institute of Medical Science

Key Result

Hepatitis A virus disrupts TLR3 signaling by targeting the essential adaptor protein TRIF for degradation by the 3CD protease-polymerase processing intermediate.

Structured PICO

P
Population
Preclinical models including Huh7 hepatoma cells, Huh7.5 cells, HEK 293FT cells, and HeLa cells
I
Intervention
Hepatitis A virus (HAV) infection or ectopic expression of HAV proteins (specifically 3CD protease-polymerase precursor)
C
Comparator
Mock infection, empty vector, or inactive mutants (e.g., 3CD-C172A)
O
Outcome
Disruption of TLR3 signaling (measured by IFN-beta promoter activation, IRF-3 dimerization/translocation, and TRIF cleavage/degradation)surrogate

HAV evades host innate immunity by using its 3CD protease-polymerase precursor to cleave the TLR3 adaptor protein TRIF, demonstrating a novel viral strategy to target multiple host adaptors with a single protease.

Abstract

Toll-like receptor 3 (TLR3) and cytosolic RIG-I-like helicases (RIG-I and MDA5) sense viral RNAs and activate innate immune signaling pathways that induce expression of interferon (IFN) through specific adaptor proteins, TIR domain-containing adaptor inducing interferon-β (TRIF), and mitochondrial antiviral signaling protein (MAVS), respectively. Previously, we demonstrated that hepatitis A virus (HAV), a unique hepatotropic human picornavirus, disrupts RIG-I/MDA5 signaling by targeting MAVS for cleavage by 3ABC, a precursor of the sole HAV protease, 3C(pro), that is derived by auto-processing of the P3 (3ABCD) segment of the viral polyprotein. Here, we show that HAV also disrupts TLR3 signaling, inhibiting poly(I:C)-stimulated dimerization of IFN regulatory factor 3 (IRF-3), IRF-3 translocation to the nucleus, and IFN-β promoter activation, by targeting TRIF for degradation by a distinct 3ABCD processing intermediate, the 3CD protease-polymerase precursor. TRIF is proteolytically cleaved by 3CD, but not by the mature 3C(pro) protease or the 3ABC precursor that degrades MAVS. 3CD-mediated degradation of TRIF depends on both the cysteine protease activity of 3C(pro) and downstream 3D(pol) sequence, but not 3D(pol) polymerase activity. Cleavage occurs at two non-canonical 3C(pro) recognition sequences in TRIF, and involves a hierarchical process in which primary cleavage at Gln-554 is a prerequisite for scission at Gln-190. The results of mutational studies indicate that 3D(pol) sequence modulates the substrate specificity of the upstream 3C(pro) protease when fused to it in cis in 3CD, allowing 3CD to target cleavage sites not normally recognized by 3C(pro). HAV thus disrupts both RIG-I/MDA5 and TLR3 signaling pathways through cleavage of essential adaptor proteins by two distinct protease precursors derived from the common 3ABCD polyprotein processing intermediate.

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Cite This Study

Qu et al. (2011) studied Hepatitis A Virus infection (in vitro). Hepatitis A Virus (HAV) 3CD protease-polymerase vs. Mock infection or empty vector was evaluated on Cleavage of TRIF and disruption of TLR3 signaling. Hepatitis A virus disrupts TLR3 signaling by targeting the essential adaptor protein TRIF for degradation by the 3CD protease-polymerase processing intermediate.

synapsesocial.com/papers/6a2a887513049c2118d7bc5ahttps://doi.org/10.1371/journal.ppat.1002169
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