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Conserved water molecules in a large family of microbial ribonucleases
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title
Conserved water molecules in a large family of microbial ribonucleases
(English)
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author
Jan Steyaert
object named as
J Steyaert
series ordinal
8
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Julie Bouckaert
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stated in
ORCID Public Data File 2021
author name string
R Loris
series ordinal
1
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U Langhorst
series ordinal
2
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S De Vos
series ordinal
3
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K Decanniere
series ordinal
4
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J Bouckaert
series ordinal
5
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D Maes
series ordinal
6
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T R Transue
series ordinal
7
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language of work or name
English
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publication date
1 July 1999
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published in
Proteins
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volume
36
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issue
1
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page(s)
117-34
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cites work
Water and proteins. II. The location and dynamics of water in protein systems and its relation to their stability and properties
1 reference
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reference URL
https://api.crossref.org/works/10.1002%2F%28SICI%291097-0134%2819990701%2936%3A1%3C117%3A%3AAID-PROT10%3E3.0.CO%3B2-H
retrieved
21 January 2018
Response of a protein structure to cavity-creating mutations and its relation to the hydrophobic effect
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reference URL
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retrieved
21 January 2018
Structural and energetic responses to cavity-creating mutations in hydrophobic cores: observation of a buried water molecule and the hydrophilic nature of such hydrophobic cavities
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21 January 2018
Dramatic thermostabilization of yeast iso-1-cytochrome c by an asparagine----isoleucine replacement at position 57.
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21 January 2018
The role of a conserved water molecule in the redox-dependent thermal stability of iso-1-cytochrome c.
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21 January 2018
Designed replacement of an internal hydration water molecule in BPTI: structural and functional implications of a glycine-to-serine mutation.
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Cavity mutants of Savinase. Crystal structures and differential scanning calorimetry experiments give hints of the function of the buried water molecules in subtilisins
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21 January 2018
Internal cavities and buried waters in globular proteins.
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21 January 2018
Internal water molecules and H‐bonding in biological macromolecules: A review of structural features with functional implications
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21 January 2018
Just add water! The effect of water on the specificity of protein-ligand binding sites and its potential application to drug design
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A decade of protein engineering on ribonuclease T1--atomic dissection of the enzyme-substrate interactions
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21 January 2018
Dissection of the structural and functional role of a conserved hydration site in RNase T1
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Structural analysis of two crystal forms of lentil lectin at 1.8 A resolution
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21 January 2018
The structures of RNase A complexed with 3'-CMP and d(CpA): active site conformation and conserved water molecules
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Conservation of solvent-binding sites in 10 crystal forms of T4 lysozyme
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21 January 2018
Molecular structure of a new family of ribonucleases
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21 January 2018
Comparison of active sites of some microbial ribonucleases: structural basis for guanylic specificity
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21 January 2018
Histidine-40 of ribonuclease T1 acts as base catalyst when the true catalytic base, glutamic acid-58, is replaced by alanine
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21 January 2018
Hydrolysis of a slow cyclic thiophosphate substrate of RNase T1 analyzed by time-resolved crystallography
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AMoRe: an automated package for molecular replacement
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Refinement of macromolecular structures by the maximum-likelihood method
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Automated refinement of protein models
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Dictionary of protein secondary structure: pattern recognition of hydrogen-bonded and geometrical features
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Satisfying hydrogen bonding potential in proteins
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Crystal structural analysis of mutations in the hydrophobic cores of barnase
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RESTRAIN: restrained structure-factor least-squares refinement program for macromolecular structures
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Crystallographic Study of Glu58Ala RNase T1.cntdot.2'-Guanosine Monophosphate at 1.9-.ANG. Resolution
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21 January 2018
Restrained least-squares refinement of the crystal structure of the ribonuclease T1*2'-guanylic acid complex at 1·9 Å resolution
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21 January 2018
The structural and sequence homology of a family of microbial ribonucleases
1 reference
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retrieved
21 January 2018
Identifiers
DOI
10.1002/(SICI)1097-0134(19990701)36:1<117::AID-PROT10>3.0.CO;2-H
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PubMed publication ID
10373011
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