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Comparative studies of rat recombinant purple acid phosphatase and bone tartrate-resistant acid phosphatase

机译:大鼠重组紫色酸性磷酸酶与抗酒石酸酸性磷酸酶的比较研究

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The tartrate-resistant acid phosphatase (TRAP) of rat osteoclasts has been shown to exhibit high (85-94 %) identity at the amino acid sequence level with the purple acid phosphatase (PAP) from bovine spleen and with pig uteroferrin. These iron-containing purple enzymes contain a binuclear iron centre, with a tyrosinate-to-Fe(III) charge-transfer transition responsible for the purple colour. In the present study, production of rat osteoclast TRAP could be achieved at a level of 4.3 mg/litre of medium using a baculovirus expression system. The enzyme was purified to apparent homogeneity using a combination of cation-exchange, hydrophobic-interaction, lectin-affinity and gel-permeation chromatography steps. The protein as isolated had a purple colour, a specific activity of 428 units/mg of protein and consisted of the single-chain form of molecular mass 34 kDa, with only trace amounts of proteolytically derived subunits. The recombinant enzyme had the ability to dephosphorylate bone matrix phosphoproteins, as previously shown for bone TRAP. Light absorption spectroscopy of the isolated purple enzyme showed a lambda(max) at 544 nm, which upon reduction with ascorbic acid changed to 515 nm, concomitant with the transition to a pink colour. EPR spectroscopic analysis of the reduced enzyme at 3.6 K revealed a typical mu-hydr(oxo)-bridged mixed-valent Fe(II)Fe(III) signal with g-values at 1.96, 1.74 and 1.60, proving that recombinant rat TRAP belongs to the family of PAPs. To validate the use of recombinant PAP in substituting for the rat bone counterpart in functional studies, various comparative studies were carried out. The enzyme isolated from bone exhibited a lower K-m for p-nitrophenyl phosphate and was slightly more sensitive to PAP inhibitors such as molybdate, tungstate, arsenate and phosphate. In contrast with the recombinant enzyme, TRAP from bone was isolated predominantly as the proteolytically cleaved, two-subunit, form. Both the recombinant enzyme and rat bone TRAP were shown to be substituted with N-linked oligosaccharides. A slightly higher apparent molecular mass of the monomeric form and N-terminal chain of bone TRAP compared with the recombinant enzyme could not be accounted for by differential N-glycosylation. Despite differences in specific post-translational modifications, the recombinant PAP should be useful in future studies on the properties and regulation of the mammalian PAP enzyme.
机译:已显示,大鼠破骨细胞的抗酒石酸酸性磷酸酶(TRAP)与来自牛脾脏的紫色酸性磷酸酶(PAP)和猪子宫铁蛋白在氨基酸序列水平上具有较高的(85-94%)一致性。这些含铁的紫色酶含有一个双核铁中心,其中酪氨酸盐到Fe(III)的电荷转移过渡导致紫色。在本研究中,使用杆状病毒表达系统可以以4.3 mg / L的培养基水平实现​​大鼠破骨细胞TRAP的生产。使用阳离子交换,疏水相互作用,凝集素亲和和凝胶渗透色谱步骤的组合,将酶纯化至表观均质。分离出的蛋白质为紫色,比活为428单位/毫克蛋白质,由分子量为34 kDa的单链形式组成,仅有少量的蛋白水解衍生的亚基。如先前对于骨TRAP所示,重组酶具有使骨基质磷蛋白脱磷酸的能力。分离的紫色酶的光吸收光谱显示在544 nm处有一个λ(最大值),经抗坏血酸还原后变为515 nm,并伴有粉红色过渡。 EPR光谱在3.6 K下还原酶的分析表明,典型的mu-hydr(oxo)桥联的混合价Fe(II)Fe(III)信号的g值为1.96、1.74和1.60,证明重组大鼠TRAP属于到PAP家族。为了在功能研究中验证重组PAP替代大鼠骨对应物的用途,进行了各种比较研究。从骨骼中分离出的酶对磷酸对硝基苯酯的K-m较低,并且对PAP抑制剂(例如钼酸盐,钨酸盐,砷酸盐和磷酸盐)的敏感性稍高。与重组酶相反,从骨中分离出TRAP主要是通过蛋白水解切割的两个亚基形式。重组酶和大鼠骨TRAP均显示被N-连接寡糖取代。与重组酶相比,骨TRAP的单体形式和N端链的表观分子量略高,不能通过差异化的N-糖基化来解释。尽管特定的翻译后修饰存在差异,但重组PAP在将来对哺乳动物PAP酶的性质和调控的研究中仍应是有用的。

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