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Expression of chimeric human aspartic proteinases
John M. Chirgwin
, Suzanne Schultz
,
Deepali Sachdev
Medicine - Hematology, Oncology, Transplant
Research output
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Contribution to journal
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Article
›
peer-review
Overview
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Keyphrases
3D Structure
16%
Acid pH
33%
Angiotensinogen
16%
Aspartic Protease
100%
Basic Residues
16%
Cathepsin D
33%
Chimera
33%
Endoplasmic Reticulum
33%
Gene Family
33%
Glycosylation
16%
Glycosylation Site
16%
Golgi
16%
Low pH
16%
Lumen
16%
Lysosome
33%
Mammalian Cells
16%
Mannose-6-phosphate
16%
Mannose-6-phosphate Receptor
16%
N-linked Oligosaccharide
16%
Neutral pH
16%
Pepsin
50%
Pepsinogen
66%
Phosphate Residue
16%
Physiological Substrates
16%
Plasma Membrane
16%
Procathepsin D
100%
Proenzymes
33%
Propeptide
33%
Prorenin
33%
Protease
16%
Renin
33%
Secretory Granules
16%
Secretory Vesicles
16%
Trans-Golgi
16%
Biochemistry, Genetics and Molecular Biology
Cathepsin D
66%
Cell Membrane
33%
Enzyme
33%
Glycosylation
33%
Lysosome
66%
Mannose 6-Phosphate
33%
Mannose 6-Phosphate Receptor
33%
Multigene Family
66%
N-Linked Glycosylation
33%
Oligosaccharide
33%
Pepsin
66%
Pepsin A
33%
Precursor
66%
Protease
100%
Proteases
33%
Renin
66%
Neuroscience
Angiotensinogen
25%
Aspartic Proteinase
100%
Cathepsin D
50%
Cell Membrane
25%
Endoplasmic Reticulum
50%
Enzyme Precursor
50%
Glycosylation
50%
Insulin-Like Growth Factor 2 Receptor
25%
Lysosomes
50%
Mannose 6 Phosphate
25%
Multigene Family
50%
Oligosaccharide
25%
Pepsin A
25%
Pepsinogen
100%
Prorenin
50%
Renin
50%
Secretory Vesicle
25%
Pharmacology, Toxicology and Pharmaceutical Science
Angiotensinogen
25%
Aspartic Proteinase
100%
Cathepsin D
50%
Enzyme Precursor
50%
Mannose 6 Phosphate
25%
Oligosaccharide
25%
Pepsin A
25%
Pepsinogen
100%
Prorenin
50%
Renin
50%
Somatomedin B Receptor
25%