4.4 Article

Heptad-repeat regions of respiratory syncytial virus F1 protein form a six-membered coiled-coil complex

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BIOCHEMISTRY
卷 39, 期 38, 页码 11684-11695

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AMER CHEMICAL SOC
DOI: 10.1021/bi000471y

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The Respiratory Syncytial Virus (RSV) fusogenic glycoprotein Fl was characterized using biochemical and biophysical techniques. Two heptad-repeat (HR) regions within Fl were shown to interact. Proteinase-K digestion experiments highlight the HR1 region (located proximal to the fusion peptide sequence) of the Fl protein to which an HR2-derived (located proximal to the membrane-spanning domain) peptide binds, thus protecting both the protein and peptide from digestion. Solution-phase analysis of HR1-derived peptides shows that these peptides adopt helical secondary structure as measured by circular dichroism. Sedimentation equilibrium studies indicate that these HR1 peptides self-associate in a monomer/trimer equilibrium with an association constant of 5.2 x 10(8) M-2. In contrast, HR2-derived peptides form random monomers in solution. CD analysis of mixtures containing peptides from the two regions demonstrate their propensity to interact and form a very stable (T-m = 87 degrees C), helical (86% helicity) complex comprised of three HR1 and three HR2 members.

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