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Solid phase synthesis and spectroscopic characterization of the active and inactive forms of bacteriophage S21 pinholin protein.
Drew, Daniel L; Ahammad, Tanbir; Serafin, Rachel A; Butcher, Brandon J; Clowes, Katherine R; Drake, Zachary; Sahu, Indra D; McCarrick, Robert M; Lorigan, Gary A.
Afiliação
  • Drew DL; Department of Chemistry and Biochemistry, Miami University, Oxford, OH, 45056, USA.
  • Ahammad T; Department of Chemistry and Biochemistry, Miami University, Oxford, OH, 45056, USA.
  • Serafin RA; Department of Chemistry and Biochemistry, Miami University, Oxford, OH, 45056, USA.
  • Butcher BJ; Department of Chemistry and Biochemistry, Miami University, Oxford, OH, 45056, USA.
  • Clowes KR; Department of Chemistry and Biochemistry, Miami University, Oxford, OH, 45056, USA.
  • Drake Z; Department of Chemistry and Biochemistry, Miami University, Oxford, OH, 45056, USA.
  • Sahu ID; Department of Chemistry and Biochemistry, Miami University, Oxford, OH, 45056, USA.
  • McCarrick RM; Department of Chemistry and Biochemistry, Miami University, Oxford, OH, 45056, USA.
  • Lorigan GA; Department of Chemistry and Biochemistry, Miami University, Oxford, OH, 45056, USA. Electronic address: lorigag@miamioh.edu.
Anal Biochem ; 567: 14-20, 2019 02 15.
Article em En | MEDLINE | ID: mdl-30528914
ABSTRACT
The mechanism for the lysis pathway of double-stranded DNA bacteriophages involves a small hole-forming class of membrane proteins, the holins. This study focuses on a poorly characterized class of holins, the pinholin, of which the S21 protein of phage ϕ21 is the prototype. Here we report the first in vitro synthesis of the wildtype form of the S21 pinholin, S2168, and negative-dominant mutant form, S21IRS, both prepared using solid phase peptide synthesis and studied using biophysical techniques. Both forms of the pinholin were labeled with a nitroxide spin label and successfully incorporated into both bicelles and multilamellar vesicles which are membrane mimetic systems. Circular dichroism revealed the two forms were both >80% alpha helical, in agreement with the predictions based on the literature. The molar ellipticity ratio [θ]222/[θ]208 for both forms of the pinholin was 1.4, suggesting a coiled-coil tertiary structure in the bilayer consistent with the proposed oligomerization step in models for the mechanism of hole formation. 31P solid-state NMR spectroscopic data on pinholin indicate a strong interaction of both forms of the pinholin with the membrane headgroups. The 31P NMR data has an axially symmetric line shape which is consistent with lamellar phase proteoliposomes lipid mimetics.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Bacteriófagos / Proteínas Virais Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Bacteriófagos / Proteínas Virais Tipo de estudo: Prognostic_studies Idioma: En Ano de publicação: 2019 Tipo de documento: Article