BMRB Entry 53282

Title:
DNAJC7_JD
Deposition date:
2025-07-15
Original release date:
2026-01-23
Authors:
Elmaleh, Bar; Rosenzweig, Rina
Citation:

Citation: Elmaleh, Bar; Faust, Ofrah; Rosenzweig, Rina. "The ALS-associated E425K mutation uncouples DNAJC7 from the Hsp70 chaperone cycle"  FEBS J. ., .-. (2026).
PubMed: 41531269

Assembly members:

Assembly members:
entity_1, polymer, 71 residues, Formula weight is not available

Natural source:

Natural source:   Common Name: Human   Taxonomy ID: 9606   Superkingdom: Eukaryota   Kingdom: Metazoa   Genus/species: Homo sapiens

Experimental source:

Experimental source:   Production method: recombinant technology   Host organism: Escherichia coli   Vector: pET29b

Entity Sequences (FASTA):

Data sets:
Data typeCount
13C chemical shifts199
15N chemical shifts68
1H chemical shifts68

Additional metadata:

  • Assembly
  • Samples and Experiments
  • Software
  • Spectrometers
  • Hide all

Assembly:

Entity Assembly IDEntity NameEntity ID
1DNAJC7_JD1

Entities:

Entity 1, DNAJC7_JD 71 residues - Formula weight is not available

1   ASPTYRTYRLYSILELEUGLYVALASPLYS
2   ASNALASERGLUASPGLUILELYSLYSALA
3   TYRARGLYSARGALALEUMETHISHISPRO
4   ASPARGHISSERGLYALASERALAGLUVAL
5   GLNLYSGLUGLUGLULYSLYSPHELYSGLU
6   VALGLYGLUALAPHETHRILELEUSERASP
7   PROLYSLYSLYSTHRARGTYRASPSERGLY
8   GLN

Samples:

sample_1: DNAJC7_JD, [U-100% 13C; U-100% 15N], 3 mM

sample_conditions_1: ionic strength: 100 mM; pH: 7; pressure: 1 atm; temperature: 298 K

Experiments:

NameSampleSample stateSample conditions
2D 1H-15N HSQCsample_1isotropicsample_conditions_1
3D HNCACOsample_1isotropicsample_conditions_1
3D HNCOsample_1isotropicsample_conditions_1
3D CBCA(CO)NHsample_1isotropicsample_conditions_1
3D HNCACBsample_1isotropicsample_conditions_1

Software:

CcpNMR - chemical shift assignment

TOPSPIN - collection

NMRPipe - processing

NMR spectrometers:

  • Bruker AVANCE NEO 600 MHz

Download HSQC peak lists in one of the following formats:
CSV: Backbone or all simulated peaks
SPARKY: Backbone or all simulated peaks