TY - GEN
T1 - Fast protein fold recognition and accurate sequence-structure alignment
AU - Zimmer, Ralf
AU - Thiele, Ralf
N1 - Publisher Copyright:
© Springer-Verlag Berlin Heidelberg 1997.
PY - 1997
Y1 - 1997
N2 - We present two approaches to the sequence-structure alignment or threading problem: given an amino acid sequence and a protein structure, find the best mapping of sequence residues to structure positions with respect to some scoring system. Methods to solve this problem have two main applications: first, the recognition or identification of a plausible fold for a protein sequence of unknown structure out of a database of representative protein structures and, second, the computation of accurate alignments by improving on sequence alignments using structural information in order to find a better starting point for homology based modeling. We describe the application of these threading methods to a blind prediction of the structure of thymidine kinase (TK) of herpes simplex virus I: in combination with standard alignment and alignment evaluation methods implemented in our software package ToPLign, we were able to identify a model structure and to build a quite accurate partial model of essential parts of the structure including the active site.
AB - We present two approaches to the sequence-structure alignment or threading problem: given an amino acid sequence and a protein structure, find the best mapping of sequence residues to structure positions with respect to some scoring system. Methods to solve this problem have two main applications: first, the recognition or identification of a plausible fold for a protein sequence of unknown structure out of a database of representative protein structures and, second, the computation of accurate alignments by improving on sequence alignments using structural information in order to find a better starting point for homology based modeling. We describe the application of these threading methods to a blind prediction of the structure of thymidine kinase (TK) of herpes simplex virus I: in combination with standard alignment and alignment evaluation methods implemented in our software package ToPLign, we were able to identify a model structure and to build a quite accurate partial model of essential parts of the structure including the active site.
UR - https://www.scopus.com/pages/publications/21744462357
M3 - Conference contribution
AN - SCOPUS:21744462357
SN - 3540633707
SN - 9783540633709
T3 - Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics)
SP - 137
EP - 146
BT - Bioinformatics - German Conference on Bioinformatics, GCB 1996, Selected Papers
A2 - Lengauer, Thomas
A2 - Hofestädt, Ralf
A2 - Schomburg, Dietmar
A2 - Löffier, Markus
PB - Springer
T2 - International German Conference on Bioinformatics, GCB 1996
Y2 - 30 September 1996 through 2 October 1996
ER -