Foldit Wiki
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*[[Puzzle 1733|Puzzle 1733: Symmetric Trimer Design: 70 Residues]]
 
*[[Puzzle 1733|Puzzle 1733: Symmetric Trimer Design: 70 Residues]]
 
*[[Puzzle 1734|Puzzle 1734: IL-7R Binder Redesign: Round 15]]
 
*[[Puzzle 1734|Puzzle 1734: IL-7R Binder Redesign: Round 15]]
  +
*[[Puzzle 1736|Puzzle 1736: Symmetric Trimer Design: 90 Residues]]
 
  +
*[[Puzzle 1737|Puzzle 1737: IL-7R Binder Redesign: Round 16]]
  +
*[[Puzzle 1738|Puzzle 1738: IL-7R Binder Redesign: Round 17]]
  +
*[[Puzzle 1739|Puzzle 1739: Aflatoxin Challenge: Round 13]]
  +
*[[Puzzle 1741|Puzzle 1741: IL-7R Binder Redesign: Round 18]]
  +
*[[Puzzle 1742|Puzzle 1742: IL-7R Binder Redesign: Round 19]]
  +
*[[Puzzle 1744|Puzzle 1744: IL-7R Binder Redesign: Round 20]]
  +
*[[Puzzle 1745|Puzzle 1745: Symmetric Trimer Design: 80 Residues]]
  +
*[[Puzzle 1746|Puzzle 1746: IL-7R Binder Redesign: Round 21]]
  +
*[[Puzzle 1748|Puzzle 1748: IL-7R Binder Redesign: Round 22]]
  +
*[[Puzzle 1749|Puzzle 1749: Symmetric Trimer Design: 100 Residues]]
  +
*[[Puzzle 1752|Puzzle 1752: Symmetric Trimer Design: 70 Residues]]
  +
*[[Puzzle 1755|Puzzle 1755: Symmetric Trimer Design: 60 Residues]]
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*[[Puzzle 1758|Puzzle 1758: Symmetric Trimer Design: H-Bond Networks]]
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*[[Puzzle 1761|Puzzle 1761: Symmetric Trimer Design: H-Bond Networks]]
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*[[Puzzle 1763|Puzzle 1763: Poly-Proline Helix Design: Round 1]]
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*[[Puzzle 1764|Puzzle 1764: Symmetric Trimer Design: H-Bond Networks]]
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*[[Puzzle 1766|Puzzle 1766: TIM Barrel Redesign: Symmetric Trimer]]
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*[[Puzzle 1769|Puzzle 1769: Poly-Proline Helix Design: Round 2]]
  +
*[[Puzzle 1772|Puzzle 1772: Poly-Proline Helix Design: Round 3]]
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*[[Puzzle 1773|Puzzle 1773: Symmetric Trimer Design: H-Bond Networks]]
  +
*[[Puzzle 1772|Puzzle 1772: Poly-Proline Helix Design: Round 4]]
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*[[Puzzle 1773|Puzzle 1776: Symmetric Tetramer Design: H-Bond Networks]]
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*[[Puzzle 1778|Puzzle 1778: Poly-Proline Helix Design: Round 5]]
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*[[Puzzle 1779|Puzzle 1779: Symmetric Tetramer Design: H-Bond Networks]]
  +
*[[Puzzle 1781|Puzzle 1781: Poly-Proline Helix Design: Round 6]]
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*[[Puzzle 1782|Puzzle 1782: Symmetric Tetramer Design: H-Bond Networks]]
  +
*[[Puzzle 1785|Puzzle 1785: Symmetric Trimer Design: H-Bond Networks]]
  +
*[[Puzzle 1781|Puzzle 1788: Poly-Proline Helix Design: Round 7]]
 
==Small Molecule Design==
 
==Small Molecule Design==
 
See [[Small molecule design puzzle|small molecule design puzzle]] for more on this type of puzzle.
 
See [[Small molecule design puzzle|small molecule design puzzle]] for more on this type of puzzle.
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*[[Puzzle 1606|Puzzle 1606: Cryo-EM Freestyle & Density 2]]
 
*[[Puzzle 1606|Puzzle 1606: Cryo-EM Freestyle & Density 2]]
 
*[[Puzzle 1667|Puzzle 1667: "Too Much Density!" Freestyle puzzle]]
 
*[[Puzzle 1667|Puzzle 1667: "Too Much Density!" Freestyle puzzle]]
  +
*[[Puzzle 1767|Puzzle 1767: Electron Density: Kinesin Coiled-Coil]]
  +
*[[Puzzle 1770|Puzzle 1770: Electron Density Kinesin Coiled-Coil: Round 2]]
   
 
==De-novo==
 
==De-novo==
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*[[Puzzle 1694|Puzzle 1694: Unsolved De-novo Freestyle 154: Symmetric Dimer]]
 
*[[Puzzle 1694|Puzzle 1694: Unsolved De-novo Freestyle 154: Symmetric Dimer]]
 
*[[Puzzle 1697|Puzzle 1697: Unsolved De-novo Freestyle 155]]
 
*[[Puzzle 1697|Puzzle 1697: Unsolved De-novo Freestyle 155]]
  +
*[[Puzzle 1751|Puzzle 1751: Unsolved De-novo Freestyle 156]]
 
  +
*[[Puzzle 1757|Puzzle 1757: Unsolved De-novo Freestyle 157]]
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*[[Puzzle 1760|Puzzle 1760: Unsolved De-novo Freestyle 157: Symmetric Trimer]]
  +
*[[Puzzle 1784|Puzzle 1784: CRISPR-Cas Transposase Part I]]
  +
*[[Puzzle 1787|Puzzle 1787: CRISPR-Cas Transposase Part II]]
 
==Standard==
 
==Standard==
   
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*[[Puzzle 1727|Puzzle 1727: Revisiting Puzzle 69: Scorpion Toxin]]
 
*[[Puzzle 1727|Puzzle 1727: Revisiting Puzzle 69: Scorpion Toxin]]
 
*[[Puzzle 1731|Puzzle 1731: Revisiting Puzzle 70: Nucleosome Protein]]
 
*[[Puzzle 1731|Puzzle 1731: Revisiting Puzzle 70: Nucleosome Protein]]
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*[[Puzzle 1735|Puzzle 1735: Revisiting Puzzle 71: Crystallin]]
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*[[Puzzle 1740|Puzzle 1740: Revisiting Puzzle 72: Citric Acid Cycle]]
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*[[Puzzle 1750|Puzzle 1750: Revisiting Puzzle 75: Antifreeze Protein]]
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*[[Puzzle 1753|Puzzle 1753: Revisiting Puzzle 76: Plant Seed Protein]]
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*[[Puzzle 1756|Puzzle 1756: Revisiting Puzzle 77: Copper Chaperone]]
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*[[Puzzle 1759|Puzzle 1759: Revisiting Puzzle 79: Pheromone]]
  +
*[[Puzzle 1760|Puzzle 1760: Unsolved De-novo Freestyle 157: Symmetric Trimer]]
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*[[Puzzle 1762|Puzzle 1762: Revisiting Puzzle 80: Calcium Channel Blocker]]
  +
*[[Puzzle 1765|Puzzle 1765: Revisiting Puzzle 81: Calcium Ion Binding Protein]]
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*[[Puzzle 1766|Puzzle 1766: TIM Barrel Redesign: Symmetric Trimer]]
  +
*[[Puzzle 1768|Puzzle 1768: Revisiting Puzzle 82: Cytotoxin]]
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*[[Puzzle 1771|Puzzle 1771: Revisiting Puzzle 83: Cardiotoxin]]
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*[[Puzzle 1774|Puzzle 1774: Revisiting Puzzle 84: Giant Anemone]]
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*[[Puzzle 1777|Puzzle 1777: Revisiting Puzzle 85: Cell Adhesion Protein]]
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*[[Puzzle 1780|Puzzle 1780: Revisiting Puzzle 86: Nematode]]
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*[[Puzzle 1783|Puzzle 1783: Revisiting Puzzle 87: Zinc Binding Protein]]
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*[[Puzzle 1786|Puzzle 1786: Revisiting Puzzle 88: Monocyte]]
   
 
==Pilot==
 
==Pilot==

Revision as of 04:47, 19 January 2020

ResultsPage

Results from Puzzle 1662.

The wiki pages listed here show images of puzzle solutions graciously provided by top-scoring players starting with puzzle 1001. See Puzzle Results: for results from puzzles 389 to 1000.

See posting results for tips on how to post images.

On the fold.it website, see Foldit Puzzles for a complete list of puzzles, past and present.

The first Foldit puzzle closed in November 2007. Player scores are shown from Puzzle 50 in May 2008 on the Foldit website.

The Puzzle Results category lists all the puzzle results pages on the wiki.

Protein classification lists early puzzles by the SCOPe class the proteins fall into. (No longer maintained.)

Contact map tips: Contact Puzzles - managing contacts

Upload multiple images

Design

Design puzzles are mutable and may be symmetry or docking types.

Small Molecule Design

See small molecule design puzzle for more on this type of puzzle.

Electron Density

See electron density puzzle for more on this type of puzzle.

De-novo

De-novo or "freestyle" puzzles generally involve "unsolved" proteins. Scientists often discover the primary structure of a protein in DNA, but aren't able to analyze the protein in the lab for various reasons. Many de-novo puzzles involve this type of mystery protein.

Some recent de-novos have actually involved proteins that were created in Foldit design puzzles. This is another way to evaluate the quality of a design. Players should be able to fold a designed protein into something close to its original designed shape.

Standard

Standard puzzles are often 'revisiting' puzzles to assist with calibration.

Revisiting puzzle results has the revisiting puzzles grouped by the puzzle being revisited.

Pilot