Structure of the aspartic protease from Rous sarcoma retrovirus refined at 2-A resolution
about
The early years of retroviral protease crystal structures.Crystal structure of human T cell leukemia virus protease, a novel target for anticancer drug design.High-resolution structure of a retroviral protease folded as a monomer.Structure of equine infectious anemia virus proteinase complexed with an inhibitor.Analysis of deletions and thermosensitive mutations in Rous sarcoma virus gag protein p10.Role of the avian retroviral protease in the activation of reverse transcriptase during virion assemblytrans-acting viral protease is necessary and sufficient for activation of avian leukosis virus reverse transcriptase.Analysis of the structure of chemically synthesized HIV-1 protease complexed with a hexapeptide inhibitor. Part I: Crystallographic refinement of 2 A data.Reduced-bond tight-binding inhibitors of HIV-1 protease. Fine tuning of the enzyme subsite specificity.Modelling, synthesis and biological activity of a BLV proteinase, made of (only) 116 amino acids.Importance of the N terminus of rous sarcoma virus protease for structure and enzymatic function.Analysis of cleavage site mutations between the NC and PR Gag domains of Rous sarcoma virusReverse transcriptase and protease activities of avian leukosis virus Gag-Pol fusion proteins expressed in insect cells.Protein crystallography and drug discovery: recollections of knowledge exchange between academia and industry.Assembly and processing of avian retroviral gag polyproteins containing linked protease dimers.A study into the effects of protein binding on nucleotide conformationAn engineered retroviral proteinase from myeloblastosis associated virus acquires pH dependence and substrate specificity of the HIV-1 proteinase.Modulation of ribosomal frameshifting frequency and its effect on the replication of Rous sarcoma virus.Expression of soluble cloned porcine pepsinogen A in Escherichia coli.Narrow substrate specificity and sensitivity toward ligand-binding site mutations of human T-cell Leukemia virus type 1 protease.Programming the Rous sarcoma virus protease to cleave new substrate sequences.Mutational analysis of the substrate binding pocket of murine leukemia virus protease and comparison with human immunodeficiency virus proteases.
P2860
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P2860
Structure of the aspartic protease from Rous sarcoma retrovirus refined at 2-A resolution
description
1990 nî lūn-bûn
@nan
1990 թուականի Յունիսին հրատարակուած գիտական յօդուած
@hyw
1990 թվականի հունիսին հրատարակված գիտական հոդված
@hy
1990年の論文
@ja
1990年論文
@yue
1990年論文
@zh-hant
1990年論文
@zh-hk
1990年論文
@zh-mo
1990年論文
@zh-tw
1990年论文
@wuu
name
Structure of the aspartic protease from Rous sarcoma retrovirus refined at 2-A resolution
@ast
Structure of the aspartic protease from Rous sarcoma retrovirus refined at 2-A resolution
@en
Structure of the aspartic protease from Rous sarcoma retrovirus refined at 2-A resolution
@nl
type
label
Structure of the aspartic protease from Rous sarcoma retrovirus refined at 2-A resolution
@ast
Structure of the aspartic protease from Rous sarcoma retrovirus refined at 2-A resolution
@en
Structure of the aspartic protease from Rous sarcoma retrovirus refined at 2-A resolution
@nl
prefLabel
Structure of the aspartic protease from Rous sarcoma retrovirus refined at 2-A resolution
@ast
Structure of the aspartic protease from Rous sarcoma retrovirus refined at 2-A resolution
@en
Structure of the aspartic protease from Rous sarcoma retrovirus refined at 2-A resolution
@nl
P2093
P356
P1433
P1476
Structure of the aspartic protease from Rous sarcoma retrovirus refined at 2-A resolution
@en
P2093
P304
P356
10.1021/BI00477A002
P407
P50
P577
1990-06-26T00:00:00Z