Title :
Parallel protein folding with STAPL
Author :
Thomas, Shawna ; Amato, Nancy M.
Author_Institution :
Dept. of Comput. Sci., Texas A&M Univ., College Station, TX, USA
Abstract :
Summary form only given. The protein folding problem is to study how a protein dynamically folds to its so-called native state - an energetically stable, three-dimensional configuration. Understanding this process is of great practical importance since some devastating diseases such as Alzheimer´s and bovine spongiform encephalopathy (Mad Cow) are associated with the misfolding of proteins. In our group, we have developed a new computational technique for studying protein folding that is based on probabilistic roadmap methods for motion planning. Our technique yields an approximate map of a protein´s potential energy landscape that contains thousands of feasible folding pathways. We have validated our method against known experimental results. Other simulation techniques, such as molecular dynamics or Monte Carlo methods, require many orders of magnitude more time to produce a single, partial, trajectory. We report on our experiences parallelizing our method using STAPL (the standard template adaptive parallel library), that is being developed in the Parasol Lab at Texas A&M. An efficient parallel version enables us to study larger proteins with increased accuracy. We demonstrate how STAPL enables portable efficiency across multiple platforms without user code modification. We show performance gains on two systems: a dedicated Linux cluster and an extremely heterogeneous multiuser Linux cluster.
Keywords :
biology computing; libraries; operating systems (computers); parallel processing; proteins; workstation clusters; Alzheimer bovine spongiform encephalopathy; Linux cluster; computational technique; heterogeneous multiuser Linux cluster; motion planning; parallel protein folding; probabilistic roadmap method; protein potential energy landscape; simulation technique; standard template adaptive parallel library; three-dimensional configuration; user code modification; Alzheimer´s disease; Bovine; Computational modeling; Computer science; Libraries; Linux; Performance gain; Potential energy; Protein engineering; Standards development;
Conference_Titel :
Parallel and Distributed Processing Symposium, 2004. Proceedings. 18th International
Print_ISBN :
0-7695-2132-0
DOI :
10.1109/IPDPS.2004.1303204