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D-氨基葡萄糖酸脱水酶:与酶结合的磷酸吡哆醛的光谱性质

D-glucosaminate dehydratase: spectrometric properties of the enzyme-bound pyridoxal 5'-phosphate.

作者信息

Iwamoto R, Imanaga Y, Soda K

出版信息

J Biochem. 1984 Jan;95(1):13-8. doi: 10.1093/oxfordjournals.jbchem.a134575.

Abstract

The holoenzyme of D-glucosaminate dehydratase [EC 4.2.1.26] from Agrobacterium radiobacter showed absorption peaks at 280 and 415 nm with a shoulder in the region of 320 to 330 nm. The treatment of the enzyme with hydroxylamine followed by dialysis led to disappearance of both the absorption peak at 415 nm and the shoulder, giving the apoenzyme. The fluorescence excitation maximum of the holoenzyme was at 320 nm with a shoulder at 420 nm (emission at 510 nm), and the emission maxima were at 420 nm with a shoulder at 370 nm (excitation at 320 nm) and at 510 nm (excitation at 420 nm). The holoenzyme showed a negative circular dichroic band at 418 nm and a positive shoulder at around 320 nm. Reduction of the holoenzyme with sodium borohydride caused a loss of the absorption peak at 415 nm with a concomitant increase of 325 nm absorbance and an irreversible loss of the activity. The occurrence of epsilon-N-pyridoxyllysine in the acid hydrolysate of the reduced enzyme showed that D-glucosaminate dehydratase contains a catalytically essential lysine residue whose epsilon-amino group binds the 4-formyl group of pyridoxal 5'-phosphate to form a Schiff base. The plots of absorption of the apoenzyme against the amount of pyridoxal 5'-phosphate added showed that four and two molar equivalents of the cofactor bind to the apoenzyme and subunit, respectively. The biphasic nature of the spectrometric titration curve of the apoenzyme with pyridoxal 5'-phosphate and the two Km values obtained for the cofactor suggest the occurrence of two distinct types of binding sites for pyridoxal 5'-phosphate in the enzyme.

摘要

来自放射土壤杆菌的D-葡糖胺酸脱水酶[EC 4.2.1.26]全酶在280和415 nm处有吸收峰,在320至330 nm区域有一个肩峰。用羟胺处理该酶后进行透析,导致415 nm处的吸收峰和肩峰均消失,得到脱辅基酶。全酶的荧光激发最大值在320 nm处,在420 nm处有一个肩峰(发射波长为510 nm),发射最大值在420 nm处,在370 nm处有一个肩峰(激发波长为320 nm),以及在510 nm处(激发波长为420 nm)。全酶在418 nm处显示出负圆二色性带,在320 nm左右有一个正肩峰。用硼氢化钠还原全酶导致415 nm处的吸收峰消失,同时325 nm处的吸光度增加,且活性不可逆丧失。还原酶的酸水解产物中出现ε-N-吡啶氧基赖氨酸,表明D-葡糖胺酸脱水酶含有一个催化必需的赖氨酸残基,其ε-氨基与磷酸吡哆醛的4-甲酰基结合形成席夫碱。脱辅基酶吸光度相对于添加的磷酸吡哆醛量的曲线表明,分别有四摩尔当量和两摩尔当量的辅因子与脱辅基酶和亚基结合。脱辅基酶与磷酸吡哆醛的光谱滴定曲线的双相性质以及辅因子获得的两个Km值表明该酶中存在两种不同类型的磷酸吡哆醛结合位点。

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