The structure of a purple acid phosphatase involved in plant growth and pathogen defence exhibits a novel immunoglobulin-like fold

被引:22
|
作者
Antonyuk, Svetlana Vladimirovna [1 ]
Olczak, Mariusz [2 ]
Olczak, Teresa [2 ]
Ciuraszkiewicz, Justyna [2 ]
Strange, Richard William [1 ]
机构
[1] Univ Liverpool, Fac Hlth & Life Sci, Mol Biophys Grp, Liverpool L69 7ZB, Merseyside, England
[2] Univ Wroclaw, Fac Biotechnol, Biochem Lab, PL-50383 Wroclaw, Poland
来源
IUCRJ | 2014年 / 1卷
关键词
purple acid phosphatase; diphosphonucleotide phosphatase; phosphodiesterase; PPD1; bimetallic Fe-Mn; fibronectin type III domain; crystal structure; SAXS; CRYSTAL-STRUCTURE; DIPHOSPHONUCLEOTIDE PHOSPHATASE/PHOSPHODIESTERASE; INORGANIC PYROPHOSPHATASE; MACROMOLECULAR STRUCTURES; ESCHERICHIA-COLI; SWEET-POTATO; FE-MN; COMPLEX; PURIFICATION; SCATTERING;
D O I
10.1107/S205225251400400X
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Phosphatases function in the production, transport and recycling of inorganic phosphorus, which is crucial for cellular metabolism and bioenergetics, as well as in bacterial killing, since they are able to generate reactive oxygen species via Fenton chemistry. Diphosphonucleotide phosphatase/phosphodiesterase (PPD1), a glycoprotein plant purple acid phosphatase (PAP) from yellow lupin seeds, contains a bimetallic Fe-Mn catalytic site which is most active at acidic pH. Unlike other plant PAPs, PPD1 cleaves the pyrophosphate bond in diphosphonucleotides and the phosphodiester bond in various phosphodiesters. The homohexameric organization of PPD1, as revealed by a 1.65 angstrom resolution crystal structure and confirmed by solution X-ray scattering, is unique among plant PAPs, for which only homodimers have previously been reported. A phosphate anion is bound in a bidentate fashion at the active site, bridging the Fe and Mn atoms in a binding mode similar to that previously reported for sweet potato PAP, which suggests that common features occur in their catalytic mechanisms. The N-terminal domain of PPD1 has an unexpected and unique fibronectin type III-like fold that is absent in other plant PAPs. Here, the in vitro DNA-cleavage activity of PPD1 is demonstrated and it is proposed that the fibronectin III-like domain, which 'overhangs' the active site, is involved in DNA selectivity, binding and activation. The degradation of DNA by PPD1 implies a role for PPD1 in plant growth and repair and in pathogen defence.
引用
收藏
页码:101 / 109
页数:9
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