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1.
Bioorg Med Chem ; 18(23): 8388-95, 2010 Dec 01.
Article in English | MEDLINE | ID: mdl-20974536

ABSTRACT

Restricting linear peptides to their bioactive conformation is an attractive way of improving their stability and activity. We used a cyclic peptide library with conformational diversity for selecting an active and stable peptide that mimics the structure and activity of the HIV-1 integrase (IN) binding loop from its cellular cofactor LEDGF/p75 (residues 361-370). All peptides in the library had the same primary sequence, and differed only in their conformation. Library screening revealed that the ring size and linker structure had a huge effect on the conformation, binding and activity of the peptides. One of the cyclic peptides, c(MZ 4-1), was a potent and stable inhibitor of IN activity in vitro and in cells even after 8 days. The NMR structure of c(MZ 4-1) showed that it obtains a bioactive conformation that is similar to the parent site in LEDGF/p75.


Subject(s)
HIV Integrase Inhibitors/chemistry , HIV Integrase/chemistry , Intercellular Signaling Peptides and Proteins/chemistry , Peptides, Cyclic/chemistry , Amino Acid Sequence , HIV Integrase/metabolism , HIV Integrase Inhibitors/chemical synthesis , HIV Integrase Inhibitors/pharmacology , HIV-1/drug effects , HeLa Cells , Humans , Peptides, Cyclic/chemical synthesis , Peptides, Cyclic/pharmacology , Protein Binding , Protein Structure, Tertiary , Virus Replication/drug effects
2.
Proc Natl Acad Sci U S A ; 105(34): 12277-82, 2008 Aug 26.
Article in English | MEDLINE | ID: mdl-18719108

ABSTRACT

We have characterized the molecular basis of the interaction between ASPP2 and Bcl-2, which are key proteins in the apoptotic pathway. The C-terminal ankyrin repeats and SH3 domain of ASPP2 (ASPP2(Ank-SH3)) mediate its interactions with the antiapoptotic protein Bcl-2. We used biophysical and computational methods to identify the interaction sites of Bcl-2 and its homologues with ASPP2. Using peptide array screening, we found that ASPP2(Ank-SH3) binds two homologous sites in all three Bcl proteins tested: (i) the conserved BH4 motif, and (ii) a binding site for proapoptotic regulators. Quantitative binding studies revealed that binding of ASPP2(Ank-SH3) to the Bcl-2 family members is selective at two levels: (i) interaction with Bcl-2-derived peptides is the tightest compared to peptides from the other family members, and (ii) within Bcl-2, binding of ASPP2(Ank-SH3) to the BH4 domain is tightest. Sequence alignment of the ASPP2-binding peptides combined with binding studies of mutated peptides revealed that two nonconserved positions where only Bcl-2 contains positively charged residues account for its tighter binding. The experimental binding results served as a basis for docking analysis, by which we modeled the complexes of ASPP2(Ank-SH3) with the full-length Bcl proteins. Using peptide arrays and quantitative binding studies, we found that Bcl-2 binds three loops in ASPP2(Ank-SH3) with similar affinity, in agreement with our predicted model. Based on our results, we propose a mechanism in which ASPP2 induces apoptosis by inhibiting functional sites of the antiapoptotic Bcl-2 proteins.


Subject(s)
Apoptosis Regulatory Proteins/metabolism , Carrier Proteins/metabolism , Proto-Oncogene Proteins c-bcl-2/metabolism , Binding Sites , Computer Simulation , Humans , Models, Molecular , Mutation , Protein Binding
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