Modeling and alanine scanning mutagenesis studies of recombinant pokeweed antiviral protein

被引:26
作者
Rajamohan, F
Pugmire, MJ
Kurinov, IV
Uckun, FM
机构
[1] Parker Hughes Inst, Biotherapy Program, Roseville, MN 55113 USA
[2] Parker Hughes Inst, Dept Prod Engn, Roseville, MN 55113 USA
[3] Parker Hughes Inst, Dept Biol Struct, Roseville, MN 55113 USA
[4] Parker Hughes Inst, Dept Biochem, Roseville, MN 55113 USA
[5] Parker Hughes Inst, Dept Virol, Roseville, MN 55113 USA
关键词
D O I
10.1074/jbc.275.5.3382
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Phytolacca americana-derived naturally occurring ribosome inhibitory protein pokeweed antiviral protein (PAP) is an N-glycosidase that catalytically removes a specific adenine residue from the stem loop of ribosomal RNA. We have employed molecular modeling studies using a novel model of PAP-RNA complexes and site-directed mutagenesis combined with bioassays to evaluate the importance of the residues at the catalytic site and a putative RNA binding active center cleft between the catalytic site and C-terminal domain for the enzymatic deadenylation of ribosomal RNA by PAP, As anticipated, alanine substitutions by site-directed mutagenesis of the PAP active site residues Tyr(72), Tyr(123), Glu(176), and Arg(179) that directly participate in the catalytic deadenylation of RNA resulted in greater than 3 logs of loss in depurinating and ribosome inhibitory activity. Similarly, alanine substitution of the conserved active site residue Trp(208), which results in the loss of stabilizing hydrophobic interactions with the ribose as well as a hydrogen bond to the phosphate backbone of the RNA substrate, caused greater than 3 logs of loss in enzymatic activity, By comparison, alanine substitutions of residues (KD29)-K-28, (FE81)-F-80, (SR112)-S-111, (FL167)-F-166 that are distant from the active site did not significantly reduce the enzymatic activity of PAP. Our modeling studies predicted that the residues of the active center cleft could via electrostatic interactions contribute to both the correct orientation and stable binding of the substrate RNA molecule in the active site pocket. Nota bly, alanine substitutions of the highly conserved, charged, and polar residues of the active site cleft including (48)Ky(49), (RR68)-R-67, (VN70)-V-69, and (FND92)-F-90 substantially reduced the depurinating and ribosome inhibitory activity of PAP, These results provide unprecedented evidence that besides the active site residues of PAP, the conserved, charged, and polar side chains located at its active center cleft also play a critical role in the PAP-mediated depurination of ribosomal RNA.
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收藏
页码:3382 / 3390
页数:9
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