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Items: 1 to 20 of 99

1.

Stabilizing and Understanding a Miniprotein by Rational Redesign.

Porter Goff KL, Nicol D, Williams C, Crump MP, Zieleniewski F, Samphire JL, Baker EG, Woolfson DN.

Biochemistry. 2019 Jul 16;58(28):3060-3064. doi: 10.1021/acs.biochem.9b00067. Epub 2019 Jul 8.

PMID:
31251570
2.

Engineering protein stability with atomic precision in a monomeric miniprotein.

Baker EG, Williams C, Hudson KL, Bartlett GJ, Heal JW, Porter Goff KL, Sessions RB, Crump MP, Woolfson DN.

Nat Chem Biol. 2017 Jul;13(7):764-770. doi: 10.1038/nchembio.2380. Epub 2017 May 22.

3.

Miniprotein Design: Past, Present, and Prospects.

Baker EG, Bartlett GJ, Porter Goff KL, Woolfson DN.

Acc Chem Res. 2017 Sep 19;50(9):2085-2092. doi: 10.1021/acs.accounts.7b00186. Epub 2017 Aug 23.

PMID:
28832117
4.

Favourable native-like helical local interactions can accelerate protein folding.

Viguera AR, Villegas V, Avilés FX, Serrano L.

Fold Des. 1997;2(1):23-33.

5.

Folding dynamics of the Trp-cage miniprotein: evidence for a native-like intermediate from combined time-resolved vibrational spectroscopy and molecular dynamics simulations.

Meuzelaar H, Marino KA, Huerta-Viga A, Panman MR, Smeenk LE, Kettelarij AJ, van Maarseveen JH, Timmerman P, Bolhuis PG, Woutersen S.

J Phys Chem B. 2013 Oct 3;117(39):11490-501. doi: 10.1021/jp404714c. Epub 2013 Sep 19.

PMID:
24050152
6.

Probing the formation of stable tertiary structure in a model miniprotein at atomic resolution: determinants of stability of a helical hairpin.

Neumoin A, Mares J, Lerch-Bader M, Bader R, Zerbe O.

J Am Chem Soc. 2007 Jul 18;129(28):8811-7. Epub 2007 Jun 20.

PMID:
17580866
8.

Site-specific thermodynamic stability and unfolding of a de novo designed protein structural motif mapped by 13C isotopically edited IR spectroscopy.

Kubelka GS, Kubelka J.

J Am Chem Soc. 2014 Apr 23;136(16):6037-48. doi: 10.1021/ja500918k. Epub 2014 Apr 15.

PMID:
24684597
9.

One Peptide Reveals the Two Faces of α-Helix Unfolding-Folding Dynamics.

Jesus CSH, Cruz PF, Arnaut LG, Brito RMM, Serpa C.

J Phys Chem B. 2018 Apr 12;122(14):3790-3800. doi: 10.1021/acs.jpcb.8b00229. Epub 2018 Mar 30.

PMID:
29558133
10.

A calorimetric study of the folding-unfolding of an alpha-helix with covalently closed N and C-terminal loops.

Taylor JW, Greenfield NJ, Wu B, Privalov PL.

J Mol Biol. 1999 Aug 27;291(4):965-76.

PMID:
10452900
11.
12.

UV-resonance raman thermal unfolding study of Trp-cage shows that it is not a simple two-state miniprotein.

Ahmed Z, Beta IA, Mikhonin AV, Asher SA.

J Am Chem Soc. 2005 Aug 10;127(31):10943-50.

PMID:
16076200
13.

A miniprotein scaffold used to assemble the polyproline II binding epitope recognized by SH3 domains.

Cobos ES, Pisabarro MT, Vega MC, Lacroix E, Serrano L, Ruiz-Sanz J, Martinez JC.

J Mol Biol. 2004 Sep 3;342(1):355-65.

PMID:
15313630
14.

Dissection of the de novo designed peptide alpha t alpha: stability and properties of the intact molecule and its constituent helices.

Fezoui Y, Braswell EH, Xian W, Osterhout JJ.

Biochemistry. 1999 Mar 2;38(9):2796-804.

PMID:
10052951
15.

Using D-Amino Acids to Delineate the Mechanism of Protein Folding: Application to Trp-cage.

Culik RM, Annavarapu S, Nanda V, Gai F.

Chem Phys. 2013 Aug 30;422. doi: 10.1016/j.chemphys.2013.01.021.

17.

Macromolecular crowding: chemistry and physics meet biology (Ascona, Switzerland, 10-14 June 2012).

Foffi G, Pastore A, Piazza F, Temussi PA.

Phys Biol. 2013 Aug;10(4):040301. Epub 2013 Aug 2.

PMID:
23912807
18.

Characterization of peptides corresponding to the seven transmembrane domains of human adenosine A2a receptor.

Lazarova T, Brewin KA, Stoeber K, Robinson CR.

Biochemistry. 2004 Oct 12;43(40):12945-54.

PMID:
15461468
20.

Structural cassette mutagenesis in a de novo designed protein: proof of a novel concept for examining protein folding and stability.

Kwok SC, Tripet B, Man JH, Chana MS, Lavigne P, Mant CT, Hodges RS.

Biopolymers. 1998;47(1):101-23.

PMID:
9692331

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