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La ricerca find articoli where authors phrase all words ' BAASE WA' sort by level,fasc_key/DESCEND, pagina_ini_num/ASCEND ha restituito 28 riferimenti
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    1. Xu, J; Baase, WA; Quillin, ML; Baldwin, EP; Matthews, BW
      Structural and thermodynamic analysis of the binding of solvent at internal sites in T4 lysozyme

      PROTEIN SCIENCE
    2. Su, AI; Lorber, DM; Weston, GS; Baase, WA; Matthews, BW; Shoichet, BK
      Docking molecules by families to increase the diversity of hits in database screens: Computational strategy and experimental evaluation

      PROTEINS-STRUCTURE FUNCTION AND GENETICS
    3. Yang, GL; Cecconi, C; Baase, WA; Vetter, IR; Breyer, WA; Haack, JA; Matthews, BW; Dahlquist, FW; Bustamante, C
      Solid-state synthesis and mechanical unfolding of polymers of T4 lysozyme

      PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
    4. Liu, RJ; Baase, WA; Matthews, BW
      The introduction of strain and its effects on the structure and stability of T4 lysozyme

      JOURNAL OF MOLECULAR BIOLOGY
    5. Sagermann, M; Baase, WA; Matthews, BW
      Structural characterization of an engineered tandem repeat contrasts the importance of context and sequence in protein folding

      PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA
    6. Gassner, NC; Baase, WA; Hausrath, AC; Matthews, BW
      Substitution with selenomethionine can enhance the stability of methionine-rich proteins

      JOURNAL OF MOLECULAR BIOLOGY
    7. Wray, JW; Baase, WA; Lindstrom, JD; Weaver, LH; Poteete, AR; Matthews, BW
      Structural analysis of a non-contiguous second-site revertant in T4 lysozyme shows that increasing the rigidity of a protein can enhance its stability

      JOURNAL OF MOLECULAR BIOLOGY
    8. Beadle, BM; Baase, WA; Wilson, DB; Gilkes, NR; Shoichet, BK
      Comparing the thermodynamic stabilities of a related thermophilic and mesophilic enzyme

      BIOCHEMISTRY
    9. Gassner, NC; Baase, WA; Lindstrom, JD; Lu, JR; Dahlquist, FW; Matthews, BW
      Methionine and alanine substitutions show that the formation of wild-type-like structure in the carboxy-terminal domain of T4 lysozyme is a rate-limiting step in folding

      BIOCHEMISTRY
    10. LIPSCOMB LA; GASSNER NC; SNOW SD; ELDRIDGE AM; BAASE WA; DREW DL; MATTHEWS BW
      CONTEXT-DEPENDENT PROTEIN STABILIZATION BY METHIONINE-TO-LEUCINE SUBSTITUTION SHOWN IN T4 LYSOZYME (VOL 7, PG 772, 1998)

      Protein science
    11. LIPSCOMB LA; GASSNER NC; SNOW SD; ELDRIDGE AM; BAASE WA; DREW DL; MATTHEWS BW
      CONTEXT-DEPENDENT PROTEIN STABILIZATION BY METHIONINE-TO-LEUCINE SUBSTITUTION SHOWN IN T4 LYSOZYME

      Protein science
    12. XU JA; BAASE WA; BALDWIN E; MATTHEWS BW
      THE RESPONSE OF T4 LYSOZYME TO LARGE-TO-SMALL SUBSTITUTIONS WITHIN THE CORE AND ITS RELATION TO THE HYDROPHOBIC EFFECT

      Protein science
    13. BALDWIN E; BAASE WA; ZHANG XJ; FEHER V; MATTHEWS BW
      GENERATION OF LIGAND-BINDING SITES IN T4 LYSOZYME BY DEFICIENCY-CREATING SUBSTITUTIONS

      Journal of Molecular Biology
    14. VETTER IR; BAASE WA; HEINZ DW; XIONG JP; SNOW S; MATTHEWS BW
      PROTEIN STRUCTURAL PLASTICITY EXEMPLIFIED BY INSERTION AND DELETION MUTANTS IN T4 LYSOZYME

      Protein science
    15. MATTHEWS BW; KUROKI R; GASSNER N; XU JA; BAASE WA; ZHANG XJ
      ENGINEERING T4 LYSOZYME FOR FOLDING, STABILITY AND FUNCTION

      Protein engineering
    16. GASSNER NC; BAASE WA; MATTHEWS BW
      A TEST OF THE JIGSAW PUZZLE MODEL FOR PROTEIN-FOLDING BY MULTIPLE METHIONINE SUBSTITUTIONS WITHIN THE CORE OF T4 LYSOZYME

      Proceedings of the National Academy of Sciences of the United Statesof America
    17. BALDWIN E; XU J; HAJISEYEDJAVADI O; BAASE WA; MATTHEWS BW
      THERMODYNAMIC AND STRUCTURAL COMPENSATION IN SIZE-SWITCH CORE REPACKING VARIANTS OF BACTERIOPHAGE-T4 LYSOZYME

      Journal of Molecular Biology
    18. ZHANG XJ; BAASE WA; SHOICHET BK; WILSON KP; MATTHEWS BW
      ENHANCEMENT OF PROTEIN STABILITY BY THE COMBINATION OF POINT MUTATIONS IN T4 LYSOZYME IS ADDITIVE

      Protein engineering
    19. SHOICHET BK; BAASE WA; KUROKI R; MATTHEWS BW
      A RELATIONSHIP BETWEEN PROTEIN STABILITY AND PROTEIN FUNCTION

      Proceedings of the National Academy of Sciences of the United Statesof America
    20. BLABER M; BAASE WA; GASSNER N; MATTHEWS BW
      ALANINE SCANNING MUTAGENESIS OF THE ALPHA-HELIX-115-123 OF PHAGE-T4 LYSOZYME - EFFECTS ON STRUCTURE, STABILITY AND THE BINDING OF SOLVENT

      Journal of Molecular Biology
    21. MORTON A; BAASE WA; MATTHEWS BW
      ENERGETIC ORIGINS OF SPECIFICITY OF LIGAND-BINDING IN AN INTERIOR NONPOLAR CAVITY OF T4 LYSOZYME

      Biochemistry
    22. JOHNSON NP; LINDSTROM J; BAASE WA; VONHIPPEL PH
      DOUBLE-STRANDED DNA TEMPLATES CAN INDUCE ALPHA-HELICAL CONFORMATION IN PEPTIDES CONTAINING LYSINE AND ALANINE - FUNCTIONAL IMPLICATIONS FORLEUCINE-ZIPPER AND HELIX-LOOP-HELIX TRANSCRIPTION FACTORS

      Proceedings of the National Academy of Sciences of the United Statesof America
    23. HEINZ DW; BAASE WA; ZHANG XJ; BLABER M; DAHLQUIST FW; MATTHEWS BW
      ACCOMMODATION OF AMINO-ACID INSERTIONS IN AN ALPHA-HELIX OF T4 LYSOZYME - STRUCTURAL AND THERMODYNAMIC ANALYSIS

      Journal of Molecular Biology
    24. BLABER M; ZHANG XJ; LINDSTROM JD; PEPIOT SD; BAASE WA; MATTHEWS BW
      DETERMINATION OF ALPHA-HELIX PROPENSITY WITHIN THE CONTEXT OF A FOLDED PROTEIN - SITES 44 AND 131 IN BACTERIOPHAGE-T4 LYSOZYME

      Journal of Molecular Biology
    25. ANDERSON DE; HURLEY JH; NICHOLSON H; BAASE WA; MATTHEWS BW
      HYDROPHOBIC CORE REPACKING AND AROMATIC AROMATIC INTERACTION IN THE THERMOSTABLE MUTANT OF T4 LYSOZYME SER 117-!PHE

      Protein science
    26. PJURA P; MATSUMURA M; BAASE WA; MATTHEWS BW
      DEVELOPMENT OF AN IN-VIVO METHOD TO IDENTIFY MUTANTS OF PHAGE T4-LYSOZYME OF ENHANCED THERMOSTABILITY

      Protein science
    27. BALDWIN EP; HAJISEYEDJAVADI O; BAASE WA; MATTHEWS BW
      THE ROLE OF BACKBONE FLEXIBILITY IN THE ACCOMMODATION OF VARIANTS THAT REPACK THE CORE OF T4-LYSOZYME

      Science
    28. FLYNN GC; BECKERS CJM; BAASE WA; DAHLQUIST FW
      INDIVIDUAL SUBUNITS OF BACTERIAL LUCIFERASE ARE MOLTEN GLOBULES AND INTERACT WITH MOLECULAR CHAPERONES

      Proceedings of the National Academy of Sciences of the United Statesof America


ASDD Area Sistemi Dipartimentali e Documentali, Università di Bologna, Catalogo delle riviste ed altri periodici
Documento generato il 09/08/20 alle ore 19:50:45