6GJS: Human NBD1 of CFTR

Human NBD1 of CFTR in complex with nanobodies D12 and T4. Determined by X-ray diffraction at 1.95 Å resolution. Released 26 Jun 2019.

Method
X-ray diffraction
Resolution
1.95 Å
Organisms
Homo sapiens, Lama glama
Chains
3
Atoms
3,928
Mol. weight
57.84 kDa
Ligands
MG, ATP
Released
26 Jun 2019

Explore 6GJS in 3D Show helices and sheets RCSB PDB PDBe

Secondary structure: helices and β-sheets

6GJS contains 15 α-helices and 38 β-strands across 3 chains. Residue ranges use author residue numbering, as in the PDB file, from PDBe. To see them in 3D, choose the Cartoon representation with Secondary structure coloring: helices, sheets and coils get different colors.

Chain A: 11 helices, 15 β-strands

ElementResiduesLengthSheet
β-strand390-399101
β-strand44111
β-strand44212
β-strand443-44971
β-strand453-45752
α-helix464-4718
β-strand479-48461
β-strand488-49142
β-strand500-50123
α-helix502-5076
α-helix514-52310
α-helix527-5315
α-helix536-5383
α-helix5391
β-strand540-54123
β-strand54613
α-helix550-56314
β-strand568-57252
α-helix580-5867
α-helix587-5948
β-strand600-60342
β-strand60614
α-helix607-6104
β-strand615-62062
β-strand623-62862
α-helix630-6345
Chain B: 2 helices, 12 β-strands
ElementResiduesLengthSheet
β-strand2-765
β-strand10-1236
β-strand18-2695
β-strand28-39126
α-helix44-452
β-strand46-5166
β-strand57-5936
β-strand67-7265
β-strand77-8265
α-helix87-893
β-strand91-101116
β-strand10914
β-strand110-11346
β-strand117-12156
Chain C: 2 helices, 11 β-strands
ElementResiduesLengthSheet
β-strand2-767
β-strand10-1348
β-strand18-2697
β-strand30-39108
β-strand46-5168
β-strand56-5838
α-helix60-623
β-strand66-7167
β-strand76-8167
α-helix86-883
β-strand90-99108
β-strand103-10758
β-strand111-11668

Molecules and chains

MoleculeChainsTypeLengthOrganismUniProt
Cystic fibrosis transmembrane conductance regulatorAprotein229Homo sapiensP13569 (AlphaFold model)
Nanobody D12Bprotein149Lama glama
Nanobody T4Cprotein143Lama glama
Sequence of entity 1 (A), FASTA
>6GJS_1 Cystic fibrosis transmembrane conductance regulator (chains A)
SLTTTEVVMENVTAFWEEGGTPVLKDINFKIERGQLLAVAGSTGAGKTSLLMMIMGELEP
SEGKIKHSGRISFCSQFSWIMPGTIKENIIFGVSYDEYRYRSVIKACQLEEDISKFAEKD
NIVLGEGGITLSGGQRARISLARAVYKDADLYLLDSPFGYLDVLTEKEIFESCVCKLMAN
KTRILVTSKMEHLKKADKILILHEGSSYFYGTFSELQNLQPDFSSKLMG
Sequence of entity 2 (B), FASTA
>6GJS_2 Nanobody D12 (chains B)
QVQLQESGGGLVQAGSSLRLACAATGSIRSINNMGWYRQAPGKQRGMVAIITRVGNTDYA
DSVKGRFTISRDNAKNTVYLQMNSLKPEDTATYYCHAEITEQSRPFYLTDDYWGQGTQVT
VSSAAAHHHHHHGAAEQKLISEEDLNGAA
Sequence of entity 3 (C), FASTA
>6GJS_3 Nanobody T4 (chains C)
QVQLQESGGGLVQAGGSLRLSCAASGSTFAIIAMGWYRQAPGKQRELVAVISTGDTRYAD
SVKGRFTISRDNAKNTVYLQMDSLRPEDTAVYYCNAAVQVRDYRNYWGQGTQVTVSSAAA
HHHHHHGAAEQKLISEEDLNGAA

Ligands and cofactors

IDNameFormulaCopies
MGMagnesium ionMg2
ATPAdenosine-5'-triphosphateC10 H16 N5 O13 P31

Primary citation

Domain-interface dynamics of CFTR revealed by stabilizing nanobodies. Sigoillot, M., Overtus, M., Grodecka, M. et al. Nat Commun (2019) 10:2636-2636. DOI 10.1038/s41467-019-10714-y · PubMed

Other PDB entries of the same protein (UniProt P13569 (AlphaFold model), which also has an AlphaFold model), best resolution first:

Browse structure collections

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