BMRB Entry 28029

Title:
The short fibrillation segment in FUS-LC domain
Deposition date:
2019-10-11
Original release date:
2021-03-11
Authors:
Qiang, Wei
Citation:

Citation: Ding, Xiufang; Sun, Fude; Chen, Jialin; Chen, Long; Tobin-Miyaji, Yuto; Xue, Song; Qiang, Wei; Luo, Shi-Zhong. "Amyloid-Forming Segment Induces Aggregation of FUS-LC Domain from Phase Separation Modulated by Site-Specific Phosphorylation"  J. Mol. Biol. 432, 467-483 (2020).
PubMed: 31805282

Assembly members:

Assembly members:
FUS_segment, polymer, 16 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: chemical synthesis   Host organism: na   Vector: na

Entity Sequences (FASTA):

Entity Sequences (FASTA):
FUS_segment: YGQSSYSSYGQSQNTG

Data sets:
Data typeCount
13C chemical shifts68

Additional metadata:

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

Assembly:

Entity Assembly IDEntity NameEntity ID
1FUS segment1

Entities:

Entity 1, FUS segment 16 residues - Formula weight is not available

1   TYRGLYGLNSERSERTYRSERSERTYRGLY
2   GLNSERGLNASNTHRGLY

Samples:

sample_1: FUS segment, [U-13C], 50 uM

sample_conditions_1: ionic strength: 10 mM; pH: 7.4; pressure: 1 atm; temperature: 280 K

Experiments:

NameSampleSample stateSample conditions
2D 13C/13C spin diffusionsample_1isotropicsample_conditions_1

Software:

X-PLOR_NIH, Schwieters, Kuszewski, Tjandra and Clore - structure solution

NMR spectrometers:

  • Bruker INOVA 600 MHz