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Purification and some properties of a non-haem iron protein from the bacteroids of soya-bean (Glycine max Merr.) nodules

机译:大豆根瘤菌中非血红素铁蛋白的纯化及部分性质

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摘要

A non-haem iron protein was isolated from an extract of soya-bean nodule bacteroids by a procedure including protamine sulphate and heat precipitation followed by chromatography on DEAE-cellulose. The purified protein contains non-haem iron and acid-labile sulphur and exhibits a spectrum with a rather broad absorption shoulder in the region 380–440nm and a more prominent peak at 280nm. From sedimentation-velocity measurements an apparent s20,w value of 1.3S was calculated. The protein functions as an electron carrier between the reducing system of illuminated chloroplast fragments and nitrogenase from nodule bacteroids, but it failed to function as a cofactor for the photochemical reduction of NADP in the presence of spinach chloroplasts. Also, it is inactive as a cofactor in the enzymic degradation of pyruvate to acetyl phosphate and CO2 in the presence of a ferredoxin-free extract of Clostridium pasteurianum. Repeated freezing, storage and thawing of the non-haem iron protein resulted in a marked loss of activity in the photochemical acetylene-reduction assay. A major portion of the activity that was lost was restored as a result of treatment with sodium sulphide, mercaptoethanol and ferrous ammonium sulphate.
机译:通过包括硫酸鱼精蛋白和热沉淀,然后在DEAE-纤维素上进行色谱分离的方法,从大豆根瘤类细菌提取物中分离出非血红素铁蛋白。纯化的蛋白质包含非血红素铁和酸不稳定的硫,并显示出在380-440nm范围内具有相当宽的吸收峰和在280nm处更为突出的峰的光谱。从沉降速度测量结果计算出1.3s的表观s20,w值。该蛋白在被照亮的叶绿体片段的还原系统和根瘤类细菌的固氮酶之间起电子载体的作用,但在菠菜叶绿体存在的情况下不能作为光化学还原NADP的辅助因子。同样,在无巴氏梭菌铁氧还蛋白提取物的存在下,它在丙酮酸酶促降解为乙酰磷酸盐和CO2的过程中作为辅因子也没有活性。非血红素铁蛋白的反复冷冻,储存和解冻在光化学乙炔还原测定中导致活性明显降低。通过硫化钠,巯基乙醇和硫酸亚铁铵处理,恢复了大部分丧失的活性。

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