NEAR-INFRARED CIRCULAR-DICHROISM, MAGNETIC CIRCULAR-DICHROISM, AND X-RAY-ABSORPTION SPECTRAL COMPARISON OF THE NONHEME FERROUS ACTIVE-SITES OF PLANT AND MAMMALIAN 15-LIPOXYGENASES

被引:55
|
作者
PAVLOSKY, MA
ZHANG, Y
WESTRE, TE
GAN, QF
PAVEL, EG
CAMPOCHIARO, C
HEDMAN, B
HODGSON, KO
SOLOMON, EI
机构
[1] STANFORD UNIV,STANFORD SYNCHROTRON RADIAT LAB,STANFORD,CA 94305
[2] SYNTEX INC,DISCOVERY RES,INST BIOCHEM & CELL BIOL,PALO ALTO,CA 94304
关键词
D O I
10.1021/ja00120a013
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Lipoxygenases (LOs) are non-heme iron enzymes which catalyze the reaction of dioxygen with cis,cis-1,4-pentadiene-containing fatty acids to form hydroperoxide products, which in mammals are the precursors to the inflammation- and immunity-mediating compounds lipoxins and leukotrienes. Recent X-ray crystal structures of ferrous soybean lipoxygenase-1 (SLO-1) offer two different descriptions of the active site: one four-coordinate and one five- or six-coordinate. Near-infrared(NIR) circular and magnetic circular dichroism (CD/MCD) and variable-temperature, variable-field (VTVH) MCD have been used to study SLO-1 in solution which is found to exist as a 40/60% mixture of five- and six-coordinate forms, respectively. Addition of linoleate substrate or alcohols shifts the mixture to the purely six-coordinate form. NIR CD/MCD studies of two mammalian LOs, rabbit reticulocyte and recombinant human 15-LOs, show that these exist as pure six-coordinate forms. X-ray absorption Fe K-edge and pre-edge data also show that the mammalian 15-LOs and SLO-1 in glycerol are six-coordinate. This is consistent with the extended X-ray absorption fine structure (EXAFS) results of SLO-1 in glycerol which show the iron active site to have 5 +/- 1 N/O at similar to 2.16 Angstrom. VTVH MCD data on the six-coordinate sites show that the mammalian and soybean enzymes have very different ground-state splittings, indicative of differences in bonding interactions with the ligand set. These differences in ferrous site coordination in solution and ground-state splittings are attributed to the substitution of a stronger histidine ligand in the mammalian 15-LOs for an asparagine in SLO-1.
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收藏
页码:4316 / 4327
页数:12
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