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***  6csc_aligned_close  ***

Normal Mode Analysis for ID 2604241133101949041

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 3 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 0.1195
mode 8 1.67 0.0751
mode 9 2.36 0.0430
mode 10 2.56 0.1043
mode 11 2.65 0.0467
mode 12 3.17 0.1708
mode 13 3.48 0.0874
mode 14 3.79 0.3258
mode 15 3.88 0.1495
mode 16 4.13 0.4012
mode 17 4.55 0.1699
mode 18 4.74 0.2267
mode 19 4.88 0.4373
mode 20 5.39 0.1739
mode 21 6.04 0.3142
mode 22 6.26 0.2583
mode 23 6.48 0.0793
mode 24 6.84 0.3402
mode 25 6.99 0.2124
mode 26 7.31 0.5486
mode 27 7.32 0.5573
mode 28 7.46 0.4196
mode 29 7.57 0.3629
mode 30 8.04 0.3959
mode 31 8.06 0.2455
mode 32 8.28 0.4368
mode 33 8.54 0.4377
mode 34 8.77 0.4391
mode 35 9.05 0.6277
mode 36 9.25 0.3075
mode 37 9.45 0.4243
mode 38 9.65 0.3941
mode 39 9.80 0.3296
mode 40 9.89 0.1948
mode 41 10.14 0.5557
mode 42 10.22 0.5053
mode 43 10.27 0.4848
mode 44 10.73 0.4734
mode 45 10.86 0.4497
mode 46 11.04 0.5087
mode 47 11.17 0.3563
mode 48 11.37 0.4246
mode 49 11.56 0.4860
mode 50 11.60 0.3307
mode 51 11.84 0.3253
mode 52 11.91 0.4001
mode 53 11.97 0.2746
mode 54 12.11 0.5153
mode 55 12.31 0.1689
mode 56 12.41 0.3888
mode 57 12.43 0.1826
mode 58 12.58 0.3389
mode 59 12.60 0.2103
mode 60 12.70 0.3115
mode 61 12.89 0.2981
mode 62 12.93 0.3768
mode 63 13.09 0.5903
mode 64 13.29 0.5100
mode 65 13.39 0.4628
mode 66 13.61 0.4817
mode 67 13.64 0.3881
mode 68 13.75 0.3490
mode 69 13.83 0.3937
mode 70 13.95 0.4303
mode 71 14.12 0.4687
mode 72 14.16 0.4861
mode 73 14.31 0.4005
mode 74 14.39 0.3354
mode 75 14.49 0.4807
mode 76 14.62 0.3432
mode 77 14.65 0.5125
mode 78 14.74 0.2901
mode 79 14.94 0.4696
mode 80 15.01 0.3945
mode 81 15.19 0.3356
mode 82 15.42 0.4551
mode 83 15.46 0.4442
mode 84 15.56 0.3638
mode 85 15.71 0.4051
mode 86 15.82 0.5508
mode 87 16.02 0.4584
mode 88 16.11 0.4724
mode 89 16.28 0.4877
mode 90 16.36 0.4236
mode 91 16.49 0.2412
mode 92 16.52 0.1846
mode 93 16.67 0.5225
mode 94 16.75 0.4429
mode 95 16.80 0.4343
mode 96 16.85 0.4586
mode 97 16.96 0.3731
mode 98 17.04 0.2050
mode 99 17.25 0.3178
mode 100 17.28 0.4611
mode 101 17.31 0.4298
mode 102 17.38 0.4197
mode 103 17.48 0.4890
mode 104 17.59 0.5440
mode 105 17.59 0.3714
mode 106 17.77 0.3989

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.