SOLVING THE STRUCTURE OF HUMAN H-FERRITIN BY GENETICALLY ENGINEERING INTERMOLECULAR CRYSTAL CONTACTS

被引:693
作者
LAWSON, DM
ARTYMIUK, PJ
YEWDALL, SJ
SMITH, JMA
LIVINGSTONE, JC
TREFFRY, A
LUZZAGO, A
LEVI, S
AROSIO, P
CESARENI, G
THOMAS, CD
SHAW, WV
HARRISON, PM
机构
[1] UNIV SHEFFIELD,KREBS INST BIOMOLEC RES,DEPT MOLEC BIOL & BIOTECHNOL,SHEFFIELD S10 2TN,S YORKSHIRE,ENGLAND
[2] EUROPEAN MOLEC BIOL LAB,W-6900 HEIDELBERG,GERMANY
[3] UNIV MILANO,OSPED SAN RAFFAELE,DIPARTIMENTO SCI & TECNOL BIOMED,I-20132 MILAN,ITALY
[4] UNIV ROMA TOR VERGATA,DIPARTIMENTO BIOL,I-00173 ROME,ITALY
[5] UNIV LEICESTER,DEPT BIOCHEM,LEICESTER LE1 7HR,ENGLAND
基金
英国惠康基金;
关键词
D O I
10.1038/349541a0
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
FERRITIN is important in iron homeostasis. Its twenty-four chains of two types, H and L, assemble as a hollow shell providing an iron-storage cavity 1-3. Ferritin molecules in cells containing high levels of iron tend to be rich in L chains, and may have a long-term storage function, whereas H-rich ferritins are more active in iron metabolism 3-7. The molecular basis for the greater activity of H-rich ferritins has until now been obscure, largely because the structure of H-chain ferritin has remained unknown owing to the difficulties in obtaining crystals ordered enough for X-ray crystallographic analysis. Here we report the three-dimensional structure of a human ferritin H-chain homopolymer. By genetically engineering a change in the sequence of the intermolecular contact region, we obtained crystals isomorphous with the homologous rat L ferritin 8,9 and of high enough quality for X-ray diffraction analysis. The X-ray structure of human H ferritin shows a novel metal site embedded within each of its four-helix bundles and we suggest that ferroxidase activity associated with this site accounts for its rapid uptake of iron 10.
引用
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页码:541 / 544
页数:4
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