Crystal structure of 2A proteinase from hand, foot and mouth disease virus.

J Mol Biol

MOH Key Laboratory of Systems Biology of Pathogens, Institute of Pathogen Biology, Chinese Academy of Medical Sciences and Peking Union Medical College, 9 Dong Dan San Tiao, Beijing 100730, People's Republic of China.

Published: November 2013

AI Article Synopsis

  • EV71 causes global epidemics but lacks effective antiviral treatment; the 2A proteinase is a potential drug target due to its key roles in virus replication and immune evasion.
  • The crystal structure of EV71 2A(pro) was determined at a high resolution, revealing similarities with other viral proteinases and highlighting a stable conformation crucial for its function.
  • The study identified important structural motifs that are vital for the enzyme's activity, offering insights for developing targeted inhibitors against EV71.

Article Abstract

EV71 is responsible for several epidemics worldwide; however, the effective antiviral drug is unavailable to date. The 2A proteinase (2A(pro)) of EV71 presents a promising drug target due to its multiple roles in virus replication, inhibition of host protein synthesis and evasion of innate immunity. We determined the crystal structure of EV71 2A(pro) at 1.85Å resolution, revealing that the proteinase maintains a chymotrypsin-like fold. The active site is composed of the catalytic triads C110A, H21 and D39 with the geometry similar to that in other picornaviral 2A(pro), 3C(pro) and serine proteinases. The cI-to-eI2 loop at the N-terminal domain of EV71 2A(pro) adopts a highly stable conformation and contributes to the hydrophilic surface property, which are strikingly different in HRV2 2A(pro) but are similar in CVB4 2A(pro). We identified a hydrophobic motif "LLWL" followed by an acidic motif "DEE" at the C-terminus of EV71 2A(pro). The "LLWL" motif is folded into the β-turn structure that is essential for the positioning of the acidic motif. Our structural and mutagenesis study demonstrated that both the negative charging and the correct positioning of the C-terminus are essential for EV71 replication. Deletion of the "LLWL" motif abrogated the proteolytic activity, indicating that the motif is critical for maintaining the active proteinase conformation. Our findings provide the structural and functional insights into EV71 2A(pro) and establish a framework for structure-based inhibitor design.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.jmb.2013.08.016DOI Listing

Publication Analysis

Top Keywords

ev71 2apro
16
crystal structure
8
2apro
8
acidic motif
8
"llwl" motif
8
ev71
7
motif
6
proteinase
4
structure proteinase
4
proteinase hand
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!