Title : Neocarzinostatin-mediated DNA damage in a model AGT.ACT site: mechanistic studies of thiol-sensitive partitioning of C4' DNA damage products.

Pub. Date : 1992 Feb 25

PMID : 1531616






3 Functional Relationships(s)
Download
Sentence
Compound Name
Protein Name
Organism
1 Neocarzinostatin-mediated DNA damage in a model AGT.ACT site: mechanistic studies of thiol-sensitive partitioning of C4" DNA damage products. Sulfhydryl Compounds angiotensinogen Homo sapiens
2 Structure-function studies revealed that a variety of different thiols produced bistranded lesions in this model by predominantly C4"-hydrogen atom abstraction (84-93%) at the T of AGT and C5"-hydrogen atom abstraction (87-91%) at the T of ACT. Sulfhydryl Compounds angiotensinogen Homo sapiens
3 Production of 3"-phosphoglycolate residues, restricted mainly to the T of AGT in bistranded lesions, correlated with the incidence of direct DS breaks in the AGT.ACT model and in plasmid DNA and appeared to be influenced by the reducing power of the thiol activator. Sulfhydryl Compounds angiotensinogen Homo sapiens