5.1. SAS ?

SAS data used in this integrative model could not be validated as the sasCIF file is currently unavailable or incomplete.

5.2. Crosslinking-MS ?

5.2.1. Restraint types ?

This table summarizes information about crosslinker(s) used for data generation, and how crosslinking information was translated into actual modeling restraints. Restraints assigned "by-residue" are interpreted as between CA atoms. Restraints between coarse-grained beads are indicated as "coarse-grained". Restraint group represents a set of crosslinking restraints applied collectively in the modeling.

There are 1702 crosslinking restraints combined in 430 restraint groups.

Linker Residue 1 Atom 1 Residue 2 Atom 2 Restraint type Distance, Å Count
DSS LYS coarse-grained LYS coarse-grained upper bound 21.00 675
DSS LYS CA LYS CA upper bound 21.00 487
DSS LYS coarse-grained SER coarse-grained upper bound 21.00 36
DSS LYS CA THR CA upper bound 21.00 4
DSS LYS CA SER CA upper bound 21.00 56
DSS ARG coarse-grained LYS coarse-grained upper bound 21.00 12
DSS ILE CA LYS CA upper bound 21.00 8
DSS ASN coarse-grained LYS coarse-grained upper bound 21.00 20
DSS ASP coarse-grained SER coarse-grained upper bound 21.00 4
DSS GLU CA SER CA upper bound 21.00 4
DSS MET coarse-grained SER coarse-grained upper bound 21.00 8
DSS GLU CA LYS CA upper bound 21.00 16
DSS LYS coarse-grained MET coarse-grained upper bound 21.00 8
DSS GLU coarse-grained MET coarse-grained upper bound 21.00 4
DSS ASP coarse-grained LYS coarse-grained upper bound 21.00 12
DSS ALA coarse-grained LYS coarse-grained upper bound 21.00 8
DSS SER coarse-grained THR coarse-grained upper bound 21.00 4
DSS ALA coarse-grained THR coarse-grained upper bound 21.00 4
DSS SER coarse-grained SER coarse-grained upper bound 21.00 4
DSS ASP coarse-grained MET coarse-grained upper bound 21.00 4
EDC ASP coarse-grained LYS coarse-grained upper bound 16.00 96
EDC GLU CA LYS CA upper bound 16.00 60
EDC ASP CA LYS CA upper bound 16.00 40
EDC GLU coarse-grained LYS coarse-grained upper bound 16.00 128

Distograms of individual restraints

Distograms (i.e., histogram plots of distances) provide an overview of distributions of distances between residues for which chemical crosslinks were identified. The shift of the distogram relative to the threshold value may indicate a poor model. Restraints with identical thresholds are grouped into one plot. Only the best distance per restraint per model group/ensemble is plotted. Inter- and intramolecular (including self-links) restraints are also grouped into one plot. Distance for a restraint between coarse-grained beads is calculated as a minimal distance between shells; if beads intersect, the distance will be reported as 0.0. A bead with the highest available resolution for a given residue is used for the assessment.

5.2.2. Satisfaction of restraints ?

Satisfaction of restraints is calculated on a restraint group (a set of crosslinking restraints applied collectively in the modeling) level. Satisfaction of a restraint group depends on satisfaction of individual restraints in the group and the conditionality (all/any). A restraint group is considered satisfied, if the condition was met in at least one model of the model group/ensemble. The number of measured restraints can be smaller than the total number of restraint groups if crosslinks involve non-modeled residues. Only deposited models are used for validation right now.

State group State Model group # of Deposited models/Total Restraint group type Satisfied (%) Violated (%) Count (Total=430)
1 1 1 1/370 All 69.30 30.70 430
Self-links/
Ambiguous
76.15 23.85 218
Heteromeric links/
Intermolecular
61.17 38.83 206
Self-links/
Intermolecular
100.00 0.00 6

Per-model satisfaction rates in model groups/ensembles

Every point represents one model in a model group/ensemble. Where possible, boxplots with quartile marks are also plotted.