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***  GPC Profiling  ***

Normal Mode Analysis for ID 2607151522251571458

The following table indicates for every normal mode its frequency (black, normalized relative to the lowest mode frequency) and its collectivity (magenta). If a second structure was submitted, the cummulative overlap between the normal modes and the conformational change is computed (red). The corresponding amplitude (dq) is then also given (green). Click on the mode link to obtain a visualization of the mean square displacement <R2> of the C-alpha atoms associated to each mode.

WARNING: there are 1 low-collectivity modes among your first 5 modes (see below)! The degree of collectivity indicates the fraction of residues that are significantly affected by a given mode. While low-frequency modes are expected to have collective character, computed ones sometimes happen to be localized. In such cases, they correspond to motions of some extended parts of the system, as often observed in crystallographic protein structures for N- and C-termini.

[HELP on collectivity] [HELP on overlap]

<R2> frequency collectivity
mode 7 1.00 0.0068
mode 8 1.16 0.1705
mode 9 1.40 0.3847
mode 10 1.47 0.4735
mode 11 1.71 0.3271
mode 12 2.01 0.3068
mode 13 2.15 0.2051
mode 14 2.28 0.4609
mode 15 2.40 0.2121
mode 16 2.54 0.2507
mode 17 2.63 0.3896
mode 18 2.74 0.1242
mode 19 2.79 0.1697
mode 20 3.00 0.5067
mode 21 3.07 0.2693
mode 22 3.12 0.2723
mode 23 3.31 0.1754
mode 24 3.36 0.3321
mode 25 3.46 0.5594
mode 26 3.57 0.5121
mode 27 3.62 0.1824
mode 28 3.67 0.2103
mode 29 3.73 0.1162
mode 30 3.76 0.5862
mode 31 3.80 0.3899
mode 32 3.98 0.3734
mode 33 4.04 0.5096
mode 34 4.09 0.4694
mode 35 4.20 0.4811
mode 36 4.28 0.4148
mode 37 4.32 0.3953
mode 38 4.34 0.3704
mode 39 4.44 0.4453
mode 40 4.46 0.4060
mode 41 4.50 0.3973
mode 42 4.65 0.4093
mode 43 4.69 0.5095
mode 44 4.75 0.3014
mode 45 4.81 0.3346
mode 46 4.81 0.3736
mode 47 4.83 0.4172
mode 48 4.92 0.3781
mode 49 4.96 0.3692
mode 50 5.00 0.2396
mode 51 5.01 0.3880
mode 52 5.10 0.4428
mode 53 5.14 0.4074
mode 54 5.18 0.4693
mode 55 5.26 0.3737
mode 56 5.27 0.3711
mode 57 5.31 0.1548
mode 58 5.35 0.5272
mode 59 5.39 0.2640
mode 60 5.43 0.3732
mode 61 5.45 0.1881
mode 62 5.52 0.4189
mode 63 5.58 0.2184
mode 64 5.71 0.4256
mode 65 5.74 0.4284
mode 66 5.77 0.1591
mode 67 5.83 0.3554
mode 68 5.85 0.3929
mode 69 5.90 0.5004
mode 70 5.97 0.4510
mode 71 6.01 0.1964
mode 72 6.04 0.3296
mode 73 6.05 0.3686
mode 74 6.11 0.4064
mode 75 6.12 0.4198
mode 76 6.20 0.5560
mode 77 6.23 0.5088
mode 78 6.26 0.4871
mode 79 6.35 0.4326
mode 80 6.36 0.3610
mode 81 6.39 0.3227
mode 82 6.43 0.4974
mode 83 6.50 0.4532
mode 84 6.60 0.4412
mode 85 6.62 0.4859
mode 86 6.66 0.3891
mode 87 6.72 0.4043
mode 88 6.74 0.6114
mode 89 6.77 0.5084
mode 90 6.81 0.4497
mode 91 6.83 0.4617
mode 92 6.88 0.4283
mode 93 6.95 0.4622
mode 94 6.98 0.3999
mode 95 7.00 0.3373
mode 96 7.05 0.4214
mode 97 7.08 0.3370
mode 98 7.12 0.4402
mode 99 7.16 0.1254
mode 100 7.18 0.4150
mode 101 7.23 0.4009
mode 102 7.26 0.5150
mode 103 7.29 0.4210
mode 104 7.33 0.4001
mode 105 7.37 0.4649
mode 106 7.43 0.4861

If you find results from this site helpful for your research, please cite one of our papers:

elNémo is maintained by Yves-Henri Sanejouand.
It was developed by Karsten Suhre.
Between 2003 and 2014, it was hosted by IGS (Marseille).
Between 2015 and 2025, it was hosted by US2B (Nantes).
Last modification: april 24th, 2026.