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- PDB-9j5f: Solution structure of disulfide-directed multicyclic peptides wit... -

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Basic information

Entry
Database: PDB / ID: 9j5f
TitleSolution structure of disulfide-directed multicyclic peptides with n-terminal helix
Componentsm1-2
KeywordsUNKNOWN FUNCTION / disulfide-directed multicyclic peptides
Biological speciessynthetic construct (others)
MethodSOLUTION NMR / simulated annealing
AuthorsFan, S.H. / Wu, C.L.
Funding support China, 1items
OrganizationGrant numberCountry
Other government China
CitationJournal: J Am Chem Soc / Year: 2025
Title: Disulfide-Directed Multicyclic Peptides with N-Terminally Extendable α-Helices for Recognition and Activation of G Protein-Coupled Receptors.
Authors: Shihui Fan / Jie Li / Jie Zhuang / Qingtong Zhou / Yiting Mai / Bingni Lin / Ming-Wei Wang / Chuanliu Wu /
Abstract: Many peptide hormones adopt long α-helical structures upon interacting with their cognate receptors but often exhibit flexible conformations when unbound. Strategies that can stabilize long α- ...Many peptide hormones adopt long α-helical structures upon interacting with their cognate receptors but often exhibit flexible conformations when unbound. Strategies that can stabilize long α-helices without disrupting their binding to receptors are still lacking, which hinders progress in their biological applications and drug development. Here, we present an approach that combines rational design with library screening to create and identify a unique disulfide-directed multicyclic peptide (DDMP) scaffold, which could effectively stabilize N-terminally extendable α-helices while displaying exceptional efficiency in disulfide pairing and oxidative folding. This DDMP scaffold was then utilized for stabilizing the α-helical structure of glucagon-like peptide-1 (GLP-1), resulting in a potent GLP-1 receptor (GLP-1R) agonist with a significantly improved α-helicity and proteolytic stability. By incorporating external α-helices into the DDMP scaffold, we can effectively preserve the native N-terminal α-helical structures while allowing for extensive evolution of the C-terminal disulfide-rich domain for enhancing target binding, as demonstrated by the generation of the DDMP-stabilized GLP-1 (g1:Ox). The cryo-electron microscopy structure of the g1:Ox-GLP-1R in complex with heterotrimeric G reveals the molecular basis for the potent binding between g1:Ox and GLP-1R. Specifically, the DDMP moiety establishes additional interactions with the extracellular domain of GLP-1R, which are absent in the case of GLP-1. Thus, this work offers a novel and effective approach for engineering therapeutic peptides and other peptide α-helices, ensuring that both the N- and C-terminal regions remain essential for target recognition and activation.
History
DepositionAug 12, 2024Deposition site: PDBJ / Processing site: PDBJ
Revision 1.0Feb 19, 2025Provider: repository / Type: Initial release
Revision 1.1Feb 26, 2025Group: Database references / Category: citation / citation_author
Item: _citation.journal_volume / _citation.page_first ..._citation.journal_volume / _citation.page_first / _citation.page_last / _citation.year / _citation_author.identifier_ORCID

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Structure visualization

Structure viewerMolecule:
MolmilJmol/JSmol

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Assembly

Deposited unit
A: m1-2


Theoretical massNumber of molelcules
Total (without water)3,5581
Polymers3,5581
Non-polymers00
Water00
1


  • Idetical with deposited unit
  • defined by author&software
  • Evidence: NMR Distance Restraints, not applicable
TypeNameSymmetry operationNumber
identity operation1_555x,y,z1
NMR ensembles
DataCriteria
Number of conformers (submitted / calculated)15 / 150structures with the lowest energy
RepresentativeModel #1lowest energy

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Components

#1: Protein/peptide m1-2


Mass: 3558.159 Da / Num. of mol.: 1 / Source method: obtained synthetically / Source: (synth.) synthetic construct (others)
Has protein modificationY

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Experimental details

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Experiment

ExperimentMethod: SOLUTION NMR
NMR experiment
Conditions-IDExperiment-IDSolution-IDSample stateSpectrometer-IDType
111anisotropic12D 1H-13C HSQC
121anisotropic12D 1H-15N HSQC
131anisotropic12D 1H-1H NOESY
141anisotropic12D 1H-1H TOCSY

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Sample preparation

DetailsType: solution
Contents: 1 mM m1-2, 50% perdeuterated acetonitrile and 50% H2O
Label: m1-2 / Solvent system: 50% perdeuterated acetonitrile and 50% H2O
SampleConc.: 1 mM / Component: m1-2 / Isotopic labeling: natural abundance
Sample conditionsIonic strength: 0 Not defined / Label: c1 / pH: 7 / Pressure: 1 atm / Temperature: 298 K

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NMR measurement

NMR spectrometerType: Bruker AVANCE III / Manufacturer: Bruker / Model: AVANCE III / Field strength: 850 MHz

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Processing

NMR software
NameDeveloperClassification
NMRFAM-SPARKYLee W, Tonelli M, Markley JLchemical shift assignment
CNSBrunger, Adams, Clore, Gros, Nilges and Readstructure calculation
ARIALinge, O'Donoghue and Nilgesrefinement
TopSpinBruker Biospinprocessing
RefinementMethod: simulated annealing / Software ordinal: 2
NMR representativeSelection criteria: lowest energy
NMR ensembleConformer selection criteria: structures with the lowest energy
Conformers calculated total number: 150 / Conformers submitted total number: 15

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