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1530: Symmetric Trimer Design: Hydrogen Bond Networks
Status: Closed

Summary

Name: 1530: Symmetric Trimer Design: Hydrogen Bond Networks
Status: Closed
Created: 06/05/2018
Points: 100
Expired: 06/12/2018 - 23:00
Difficulty: Intermediate
Description: This symmetric design puzzle has C3 symmetry, with three symmetric chains. The H-bond Network Filter encourages players to bury satisfied H-bond networks at the interface between the three chains. We've doubled the H-bond network bonus, but we'd like players to focus on building networks deep in the core of the protein complex. There a couple other filters in effect; see the puzzle comments for details. The Baker Lab will run folding predictions on your solutions for this puzzle, and those that perform well will be synthesized in the lab. Remember, you can use the Upload for Scientists button for up to 5 designs that you want us to look at, even if they are not the best-scoring solutions!
Categories: Design, Overall, Symmetry

Top Groups

RankGroupScorePoints
11Trinity Biology7,0461
12Richard Dawkins Foundation3,9371
13test_group13351
14DSN @ Home01

Top Evolvers

Top Soloists

RankPlayerGroupScorePoints
11bertro 62 2046 Beta Folders16,36764
12stomjoh 62 96  16,28361
13ZeroLeak7 62 51 Go Science16,25858
14hpaege 62 2046  16,21656
15robgee 7 9 Anthropic Dreams16,11853


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Comments

bkoep's picture
User offline. Last seen 2 hours 19 sec ago. Offline
Joined: 11/15/2012
Groups: Foldit Staff
Filters

Core Existence: Monomer: Ensures that at least 21 residues are buried in the core of the monomer unit.

Core Existence: Complex: Ensures that at least 63 residues are buried in the core of the entire complex (including the interface between monomer units). The threshold of "buriedness" between core and surface residues is more stringent than usual, so residues may have to be "extra buried" to be counted toward the core of the protein complex.

HBond Network: Rewards networks that comprise at least three hydrogen bonds involving core residues. Networks must be at least 75% satisfied (i.e. 75% of all polar atoms in a network must make a hydrogen bond).

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Developed by: UW Center for Game Science, UW Institute for Protein Design, Northeastern University, Vanderbilt University Meiler Lab, UC Davis
Supported by: DARPA, NSF, NIH, HHMI, Amazon, Microsoft, Adobe, Boehringer Ingelheim, RosettaCommons