| Project Name | mou1 |
| Sequence | HPETLVKVKD AEDQLGARVG YIELDLNSGK ILESFRPEER FPMMSTFKVL LCGAVLSRVD AGQEQLGRRI HYSQNDLVEY SPVTEKHLTD GMTVRELCSA AITMSDNTAA NLLLTTIGGP KELTAFLHNM GDHVTRLDRW EPELNEAIPN DERDTTMPAA MATTLRKLLT GELLTLASRQ QLIDWMEADK VAGPLLRSAL PAGWFIADKS GAGERGSRGI IAALGPDGKP SRIVVIYTTG SQATMDERNR QIAEIGASLI KHW |
| Secondary structure | CHHHHHHHHH HHHHHCCEEE EEEEECCCCC EEEEECCCCC EECCCCHHHH HHHHHHHHHH CCCCCCCCEE CCCCCCCCCC CCCCCCCCCC CEEHHHHHHH HHHCCCHHHH HHHHHHHCCH HHHHHHHHHC CCCCCCCCCC CCCCCCCCCC CCCCEECHHH HHHHHHHHHH CCCCCHHHHH HHHHHHHCCC CCCCCHHHHC CCCCEEEEEE EECCCCCEEE EEEEECCCCC CEEEEEEEEC CCCCHHHHHH HHHHHHHHHH HCC |
| Project Name | mou1 |
| Project Name | mou1 |
The table contains RMSD and GDT_TS values (calculated on the Cα atoms) between the predicted models and the input structure. Note that GDT_TS metric is intended as a more accurate measurement than the more common RMSD.
Read more about the root-mean-square deviation (RMSD) measure
Read more about the global distance test (GDT, also written as GDT_TS to represent "total score") measure.
The table contains RMSD values (calculated on the Cα atoms) between the predicted models.
Read more about the root-mean-square deviation (RMSD) measure.
The table contains GDT_TS values (calculated on the Cα atoms) between the predicted models.
Read more about the global distance test (GDT, also written as GDT_TS to represent "total score") measure.
© Laboratory of Theory of Biopolymers, Faculty of Chemistry, University of Warsaw 2013