LUTE (Local Unpruned Tuple Expansion): Accurate Continuously Flexible Protein Design with General Energy Functions and Rigid-rotamer-like Efficiency
نویسندگان
چکیده
Most protein design algorithms search over discrete conformations and an energy function that is residue-pairwise, that is, a sum of terms that depend on the sequence and conformation of at most two residues. Although modeling of continuous flexibility and of non-residue-pairwise energies significantly increases the accuracy of protein design, previous methods to model these phenomena add a significant asymptotic cost to design calculations. We now remove this cost by modeling continuous flexibility and non-residue-pairwise energies in a form suitable for direct input to highly efficient, discrete combinatorial optimization algorithms such as DEE/A* or branch-width minimization. Our novel algorithm performs a local unpruned tuple expansion (LUTE), which can efficiently represent both continuous flexibility and general, possibly nonpairwise energy functions to an arbitrary level of accuracy using a discrete energy matrix. We show using 47 design calculation test cases that LUTE provides a dramatic speedup in both single-state and multistate continuously flexible designs.
منابع مشابه
LUTE ( Local Unpruned Tuple Expansion ) : Accurate continuously flexible protein design with general energy functions and rigid - rotamer - like e � ciency Supplementary Information
Section A describes the least-squares method used to calculate the LUTE matrix. Section B describes what terms need to be included in the energy matrix. Each term corresponds to a tuple of RCs at di↵erent positions. Section C describes how a pruning interval, a parameter used for pruning in continuously flexible designs, can be computed for several types of LUTE calculations. Section D provides...
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عنوان ژورنال:
- Journal of computational biology : a journal of computational molecular cell biology
دوره 24 6 شماره
صفحات -
تاریخ انتشار 2016