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Mutations of G(sα) designed to alter the reactivity of the protein with bacterial toxins. Substitutions at Arg
187
results in loss of GTPase activity
M. Freissmuth, A. G. Gilman
Pharmacology
Research output
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Article
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peer-review
169
Scopus citations
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187
results in loss of GTPase activity'. Together they form a unique fingerprint.
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Medicine & Life Sciences
Adenosine Diphosphate Ribose
24%
Adenylyl Cyclases
50%
ADP-Ribosylation
22%
Arginine
15%
Bacterial Toxins
90%
Carrier Proteins
14%
Cell Membrane
12%
Cholera Toxin
39%
Complementary DNA
13%
GTP Phosphohydrolases
75%
GTP-Binding Proteins
16%
Guanosine Triphosphate
70%
Hydrolysis
30%
Mutant Proteins
17%
Mutation
37%
Peptides
10%
Pertussis Toxin
37%
Proteins
24%
Chemical Compounds
Arginine Residue
13%
Bacterial Toxin
100%
Dissociation
7%
GDP
14%
Glu-Ala
18%
Guanine
10%
Hydrolysis
13%
Mutation
56%
Polypeptide
9%
Protein
27%
Substitution Reaction
41%
Toxin
42%