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  • Anti-HIV peptide  (1)
  • Isotopically labeled RNA  (1)
  • 1
    ISSN: 1573-5001
    Keywords: Triple-resonance 3D NMR ; Isotopically labeled RNA ; Purine ; Intraresidue sugar-to-base correlations ; HsCsNb ; HsCs(N)bCb ; HbNbCb
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Chemistry and Pharmacology
    Notes: Summary A set of three 3D (1H, 13C, 15N) triple-resonance correlation experiments has been designed to provide H1′-H8 intraresidue sugar-to-base correlations in purines in an unambiguous and efficient manner. Together, the HsCsNb, HsCs(N)bCb, and HbNbCb experiments correlate the H1′ sugar proton to the H8 proton of the attached base by means of the {H1′, C1′, N9, C8, H8} heteronuclear scalar coupling network. The assignment strategy presented here allows for unambiguous H1′-H8 intraresidue correlations, provided that no two purines have both the same H1′ and C1′ chemical shifts and the same C8 and N9 chemical shifts. These experiments have yielded H1′-H8 intraresidue sugar-to-base correlations for all five guanosines in the [13C, 15N] isotopically labeled RNA duplex r(GGCGCUUGCGUC)2.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-5001
    Keywords: Amphipathic peptide ; Anti-HIV peptide ; Restrained energy minimization ; Variable target function
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology , Chemistry and Pharmacology
    Notes: Summary The 21-amino acid peptides siamycin II (BMY-29303) and siamycin I (BMY-29304), derived from Streptomyces strains AA3891 and AA6532, respectively, have been found to inhibit HIV-1 fusion and viral replication in cell culture. The primary sequence of siamycin II is CLGIGSCNDFAGCGYAIVCFW. Siamycin I differs by only one amino acid; it has a valine residue at position 4. In both peptides, disulfide bonds link Cys1 with Cys13 and Cys7 with Cys19, and the side chain of Asp9 forms an amide bond with the N-terminus. Siamycin II, when dissolved in a 50:50 mixture of DMSO and H2O, yields NOESY spectra with exceptional numbers of cross peaks for a peptide of this size. We have used 335 NOE distance constraints and 13 dihedral angle constraints to generate an ensemble of 30 siamycin II structures; these have average backbone atom and all heavy atom rmsd values to the mean coordinates of 0.24 and 0.52 Å, respectively. The peptide displays an unusual wedge-shaped structure, with one face being predominantly hydrophobic and the other being predominantly hydrophilic. Chemical shift and NOE data show that the siamycin I structure is essentially identical to siamycin II. These peptides may act by preventing oligomerization of the HIV transmembrane glycoprotein gp41, or by interfering with interactions between gp41 and the envelope glycoprotein gp120, the cell membrane or membrane-bound proteins [Frèchet, D. et al. (1994) Biochemistry, 33, 42–50]. The amphipathic nature of siamycin II and siamycin I suggests that a polar (or apolar) site on the target protein may be masked by the apolar (or polar) face of the peptide upon peptide/protein complexation.
    Type of Medium: Electronic Resource
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