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1.
Zool Res ; 43(5): 886-896, 2022 Sep 18.
Article de Anglais | MEDLINE | ID: mdl-36052553

RÉSUMÉ

Various peptide toxins in animal venom inhibit voltage-gated sodium ion channel Nav1.7, including Nav-targeting spider toxin (NaSpTx) Family I. Toxins in NaSpTx Family I share a similar structure, i.e., N-terminal, loops 1-4, and C-terminal. Here, we used Mu-theraphotoxin-Ca2a (Ca2a), a peptide isolated from Cyriopagopus albostriatus, as a template to investigate the general properties of toxins in NaSpTx Family I. The toxins interacted with the cell membrane prior to binding to Nav1.7 via similar hydrophobic residues. Residues in loop 1, loop 4, and the C-terminal primarily interacted with the S3-S4 linker of domain II, especially basic amino acids binding to E818. We also identified the critical role of loop 2 in Ca2a regarding its affinity to Nav1.7. Our results provide further evidence that NaSpTx Family I toxins share similar structures and mechanisms of binding to Nav1.7.


Sujet(s)
Venins d'araignée , Animaux , Peptides/composition chimique , Canaux sodiques , Venins d'araignée/composition chimique , Venins d'araignée/génétique , Venins d'araignée/pharmacologie , Bloqueurs de canaux sodiques voltage-dépendants/composition chimique , Bloqueurs de canaux sodiques voltage-dépendants/pharmacologie , Bloqueurs de canaux sodiques voltage-dépendants/usage thérapeutique
2.
J Biol Chem ; 292(21): 8683-8693, 2017 05 26.
Article de Anglais | MEDLINE | ID: mdl-28336533

RÉSUMÉ

The plasma transmembrane (TM) glycoprotein CD36 is critically involved in many essential signaling processes, especially the binding/uptake of long-chain fatty acids and oxidized low-density lipoproteins. The association of CD36 potentially activates cytosolic protein tyrosine kinases that are thought to associate with the C-terminal cytoplasmic tail of CD36. To understand the mechanisms by which CD36 mediates ligand binding and signal transduction, we have characterized the homo-oligomeric interaction of CD36 TM domains in membrane environments and with molecular dynamics (MD) simulations. Analysis of pyrene- and coumarin-labeled TM1 peptides in SDS by FRET confirmed the homodimerization of the CD36 TM1 peptide. Homodimerization assays of CD36 TM domains with the TOXCAT technique showed that its first TM (TM1) domain, but not the second TM (TM2) domain, could homodimerize in a cell membrane. Small-residue, site-specific mutation scanning revealed that the CD36 TM1 dimerization is mediated by the conserved small residues Gly12, Gly16, Ala20, and Gly23 Furthermore, molecular dynamics (MD) simulation studies demonstrated that CD36 TM1 exhibited a switching dimerization with two right-handed packing modes driven by the 12GXXXGXXXA20 and 20AXXG23 motifs, and the mutational effect of G16I and G23I revealed these representative conformations of CD36 TM1. This packing switch pattern of CD36 TM1 homodimer was further examined and confirmed by FRET analysis of monobromobimane (mBBr)-labeled CD36 TM1 peptides. Overall, this work provides a structural basis for understanding the role of TM association in regulating signal transduction via CD36.


Sujet(s)
Antigènes CD36/composition chimique , Simulation de dynamique moléculaire , Multimérisation de protéines , Motifs d'acides aminés , Antigènes CD36/génétique , Antigènes CD36/métabolisme , Humains , Domaines protéiques , Structure quaternaire des protéines
3.
PLoS One ; 9(8): e105560, 2014.
Article de Anglais | MEDLINE | ID: mdl-25148259

RÉSUMÉ

The DAP12-NKG2C activating immunoreceptor complex is one of the multisubunit transmembrane protein complexes in which ligand-binding receptor chains assemble with dimeric signal-transducing modules through non-covalent associations in their transmembrane (TM) domains. In this work, both coarse grained and atomistic molecular dynamic simulation methods were applied to investigate the self-assembly dynamics of the transmembrane domains of the DAP12-NKG2C activating immunoreceptor complex. Through simulating the dynamics of DAP12-NKG2C TM heterotrimer and point mutations, we demonstrated that a five-polar-residue motif including: 2 Asps and 2 Thrs in DAP12 dimer, as well as 1 Lys in NKG2C TM plays an important role in the assembly structure of the DAP12-NKG2C TM heterotrimer. Furthermore, we provided clear evidences to exclude the possibility that another NKG2C could stably associate with the DAP12-NKG2C heterotrimer. Based on the simulation results, we proposed a revised model for the self-assembly of DAP12-NKG2C activating immunoreceptor complex, along with a plausible explanation for the association of only one NKG2C with a DAP12 dimer.


Sujet(s)
Protéines adaptatrices de la transduction du signal/composition chimique , Protéines membranaires/composition chimique , Simulation de dynamique moléculaire , Sous-famille C des récepteurs de cellules NK de type lectine/composition chimique , Protéines adaptatrices de la transduction du signal/génétique , Protéines adaptatrices de la transduction du signal/métabolisme , Séquence d'acides aminés , Humains , Protéines membranaires/génétique , Protéines membranaires/métabolisme , Modèles moléculaires , Complexes multiprotéiques/composition chimique , Complexes multiprotéiques/métabolisme , Mutation , Sous-famille C des récepteurs de cellules NK de type lectine/génétique , Sous-famille C des récepteurs de cellules NK de type lectine/métabolisme , Liaison aux protéines , Motifs et domaines d'intéraction protéique , Multimérisation de protéines
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