Literature DB >> 11124911

Hydrophobic core malleability of a de novo designed three-helix bundle protein.

S T Walsh1, V I Sukharev, S F Betz, N L Vekshin, W F DeGrado.   

Abstract

De novo protein design provides a tool for testing the principles that stabilize the structures of proteins. Recently, we described the design and structure determination of alpha(3)D, a three-helix bundle protein with a well-packed hydrophobic core. Here, we test the malleability and adaptability of this protein's structure by mutating a small, Ala residue (A60) in its core to larger, hydrophobic side-chains, Leu and Ile. Such changes introduce strain into the structures of natural proteins, and therefore generally destabilize the native state. By contrast, these mutations were slightly stabilizing ( approximately 1.5 kcal mol(-1)) to the tertiary structure of alpha(3)D. The value of DeltaC(p) for unfolding of these mutants was not greatly affected relative to wild-type, indicating that the change in solvent accessibility for unfolding was similar. However, two-dimensional heteronuclear single quantum coherence spectra indicate that the protein adjusts to the introduction of steric bulk in different ways. A60L-alpha(3)D showed serious erosion in the dispersion of both the amide backbone as well as the side-chain methyl chemical shifts. By contrast, A60I-alpha(3)D showed excellent dispersion of the backbone resonances, and selective changes in dispersion of the aliphatic side-chains proximal to the site of mutation. Together, these data suggest that alpha(3)D, although folded into a unique three-dimensional structure, is nevertheless more malleable and flexible than most natural, native proteins. Copyright 2001 Academic Press.

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Year:  2001        PMID: 11124911     DOI: 10.1006/jmbi.2000.4184

Source DB:  PubMed          Journal:  J Mol Biol        ISSN: 0022-2836            Impact factor:   5.469


  20 in total

1.  Structure and stability effects of mutations designed to increase the primary sequence symmetry within the core region of a beta-trefoil.

Authors:  S R Brych; S I Blaber; T M Logan; M Blaber
Journal:  Protein Sci       Date:  2001-12       Impact factor: 6.725

2.  Accommodation of a highly symmetric core within a symmetric protein superfold.

Authors:  Stephen R Brych; Jaewon Kim; Timothy M Logan; Michael Blaber
Journal:  Protein Sci       Date:  2003-12       Impact factor: 6.725

3.  Ultrafast folding of alpha3D: a de novo designed three-helix bundle protein.

Authors:  Yongjin Zhu; Darwin O V Alonso; Kosuke Maki; Cheng-Yen Huang; Steven J Lahr; Valerie Daggett; Heinrich Roder; William F DeGrado; Feng Gai
Journal:  Proc Natl Acad Sci U S A       Date:  2003-12-11       Impact factor: 11.205

4.  Folding specificity induced by loop stiffness.

Authors:  Laura Spagnolo; Salvador Ventura; Luis Serrano
Journal:  Protein Sci       Date:  2003-07       Impact factor: 6.725

5.  Stably folded de novo proteins from a designed combinatorial library.

Authors:  Yinan Wei; Tun Liu; Stephen L Sazinsky; David A Moffet; István Pelczer; Michael H Hecht
Journal:  Protein Sci       Date:  2003-01       Impact factor: 6.725

6.  DNA targeting and cleavage by an engineered metalloprotein dimer.

Authors:  Siu Wah Wong-Deyrup; Charulata Prasannan; Cynthia M Dupureur; Sonya J Franklin
Journal:  J Biol Inorg Chem       Date:  2011-11-25       Impact factor: 3.358

7.  Extracting rate coefficients from single-molecule photon trajectories and FRET efficiency histograms for a fast-folding protein.

Authors:  Hoi Sung Chung; Irina V Gopich; Kevin McHale; Troy Cellmer; John M Louis; William A Eaton
Journal:  J Phys Chem A       Date:  2010-05-28       Impact factor: 2.781

8.  A one-dimensional free energy surface does not account for two-probe folding kinetics of protein alpha(3)D.

Authors:  Feng Liu; Charles Dumont; Yongjin Zhu; William F DeGrado; Feng Gai; Martin Gruebele
Journal:  J Chem Phys       Date:  2009-02-14       Impact factor: 3.488

9.  Structure and dynamics of de novo proteins from a designed superfamily of 4-helix bundles.

Authors:  Abigail Go; Seho Kim; Jean Baum; Michael H Hecht
Journal:  Protein Sci       Date:  2008-05       Impact factor: 6.725

10.  Desolvation and development of specific hydrophobic core packing during Im7 folding.

Authors:  Alice I Bartlett; Sheena E Radford
Journal:  J Mol Biol       Date:  2010-01-04       Impact factor: 5.469

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