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Correlation between local structural dynamics of proteins inferred from NMR ensembles and evolutionary dynamics of homologues of known structure
Authors:Swapnil Mahajan  Alexandre G de Brevern  Bernard Offmann
Institution:1. Faculté des Sciences et Technologies, Université de La Réunion, F-97715 Saint Denis Messag Cedex 09, La Réunion, France.;2. INSERM, UMR-S S665, DSIMB, F-97715 Saint Denis Messag Cedex 09, La Réunion, France.;3. Laboratoire d’Excellence GR-Ex, F-75739, Paris, France.;4. Laboratoire d’Excellence GR-Ex, F-75739, Paris, France.;5. INSERM, U665, DSIMB, F-75739, Paris, France.;6. INSERM, Univ Paris Diderot, Sorbonne Paris Cité, UMR-S665, F-75739, Paris, France.;7. Institut National de la Transfusion Sanguine, F-75739, Paris, France.;8. UFIP CNRS FRE 3478, Université de Nantes, F-44322, Nantes Cedex 03, France.;9. UFIP CNRS FRE 3478, F-44322, Nantes Cedex 03, France.
Abstract:Conformational changes in proteins are extremely important for their biochemical functions. Correlation between inherent conformational variations in a protein and conformational differences in its homologues of known structure is still unclear. In this study, we have used a structural alphabet called Protein Blocks (PBs). PBs are used to perform abstraction of protein 3-D structures into a 1-D strings of 16 alphabets (ap) based on dihedral angles of overlapping pentapeptides. We have analyzed the variations in local conformations in terms of PBs represented in the ensembles of 801 protein structures determined using NMR spectroscopy. In the analysis of concatenated data over all the residues in all the NMR ensembles, we observe that the overall nature of inherent local structural variations in NMR ensembles is similar to the nature of local structural differences in homologous proteins with a high correlation coefficient of .94. High correlation at the alignment positions corresponding to helical and β-sheet regions is only expected. However, the correlation coefficient by considering only the loop regions is also quite high (.91). Surprisingly, segregated position-wise analysis shows that this high correlation does not hold true to loop regions at the structurally equivalent positions in NMR ensembles and their homologues of known structure. This suggests that the general nature of local structural changes is unique; however most of the local structural variations in loop regions of NMR ensembles do not correlate to their local structural differences at structurally equivalent positions in homologues.
Keywords:protein blocks  protein structures  conformational changes  structurally equivalent positions  loop regions
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