| Title : Molecular dynamics complemented by site-directed mutagenesis reveals significant difference between the interdomain salt bridge networks stabilizing oligopeptidases B from bacteria and protozoa in their active conformations - Petrenko_2020_J.Biomol.Struct.Dyn_38_4868 |
| Author(s) : Petrenko DE , Mikhailova AG , Timofeev VI , Agapova Y , Karlinsky DM , Komolov AS , Korzhenevskiy DA , Vlaskina AV , Rumsh LD , Rakitina TV |
| Ref : J Biomol Struct Dyn , 38 :4868 , 2020 |
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Abstract :
Oligopeptidases B (OpdBs) are trypsin-like peptidases from protozoa and bacteria that belong to the prolyl oligopeptidase (POP) family. All POPs consist of C-terminal catalytic domain and N-terminal beta-propeller domain and exist in two major conformations: closed (active), where the domains and residues of the catalytic triad are positioned close to each other, and open (non-active), where two domains and residues of the catalytic triad are separated. The interdomain interface, particularly, one of its salt bridges (SB1), plays a role in the transition between these two conformations. However, due to double amino acid substitution (E/R and R/Q), this functionally important SB1 is absent in gamma-proteobacterial OpdBs including peptidase from Serratia proteamaculans (PSP). In this study, molecular dynamics was used to analyze inter- and intradomain interactions stabilizing PSP in the closed conformation, in which catalytic H652 is located close to other residues of the catalytic triad. The 3D models of either wild-type PSP or of mutant PSPs carrying activating mutations E125A and D649A in complexes with peptide-substrates were subjected to the analysis. The mechanism that regulates transition of H652 from active to non-active conformation upon domain separation in PSP and other gamma-proteobacterial OpdB was proposed. The complex network of polar interactions within H652-loop/C-terminal alpha-helix and between these areas and beta-propeller domain, established in silico, was in a good agreement with both previously published results on the effects of single-residue mutations and new data on the effects of the activating mutations on each other and on the low active mutant PSP-K655A.Communicated by Ramaswamy H. Sarma. |
| PubMedSearch : Petrenko_2020_J.Biomol.Struct.Dyn_38_4868 |
| PubMedID: 31724904 |
| Gene_locus related to this paper: 9gamm-b3vi58 |
| Gene_locus | 9gamm-b3vi58 |
Petrenko DE, Mikhailova AG, Timofeev VI, Agapova Y, Karlinsky DM, Komolov AS, Korzhenevskiy DA, Vlaskina AV, Rumsh LD, Rakitina TV (2020)
Molecular dynamics complemented by site-directed mutagenesis reveals significant difference between the interdomain salt bridge networks stabilizing oligopeptidases B from bacteria and protozoa in their active conformations
J Biomol Struct Dyn
38 :4868
Petrenko DE, Mikhailova AG, Timofeev VI, Agapova Y, Karlinsky DM, Komolov AS, Korzhenevskiy DA, Vlaskina AV, Rumsh LD, Rakitina TV (2020)
J Biomol Struct Dyn
38 :4868