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首页> 外文期刊>The biochemical journal >Chemical cross-linking of a dimeric protein on a modified lectin matrix. A general probe for the chemical topology of oligomeric glycoproteins
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Chemical cross-linking of a dimeric protein on a modified lectin matrix. A general probe for the chemical topology of oligomeric glycoproteins

机译:二聚体蛋白在修饰的凝集素基质上的化学交联。寡聚糖蛋白化学拓扑的一般探针

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pA dimeric glycoprotein, glucose oxidase, was allowed to react with lysine-specific cross-linkers, both when immobilized on a succinoylated lectin matrix at a critically low density and also at a high density in solution. Analysis of the cross-linked complexes thus obtained led to the following inferences with regard to the structure of this protein. (1) Of the 15 lysine residues on each glucose oxidase protomer, none is available on the non-interfacial surfaces. (2) Assuming that this protein possesses C2 symmetry with isologous bonding between subunits, it may be inferred that on each promoter there are at least two lysine clusters along or close to the interprotomeric interface. (3) These ‘interfacial’ lysine residues on each protomer are so oriented that the epsilon-amino groups of lysine residues a and b on protomer 1 ‘face’, and are very close to, the epsilon-amino groups of lysine residues b9 and a9 respectively on protomer 2. General inferences on the geometry of dimeric proteins derivable from an analysis of the cross-linked complexes obtained (as well as those not seen) by using this low-density matrix cross-linking approach were enumerated. Modified lectin matrices may prove useful in studying the three-dimensional structure of glycoproteins, particularly non-crystallizable oligomers./p
机译:将二聚体糖蛋白葡萄糖氧化酶与赖氨酸特异性交联剂反应,当以临界低密度和溶液中高密度将其固定在琥珀酰化的凝集素基质上时。对如此获得的交联复合物的分析导致对该蛋白质结构的以下推断。 (1)每个葡萄糖氧化酶启动子上的15个赖氨酸残基在非界面表面均不可用。 (2)假设该蛋白质具有C2对称性,且亚基之间具有同种键,则可以推断出在每个启动子上沿着或靠近蛋白质间的界面至少有两个赖氨酸簇。 (3)每个protomer上的这些“界面”赖氨酸残基的取向应使protomer 1'face'上的赖氨酸残基a和b的ε-氨基残基非常接​​近,赖氨酸残基b9和b的ε-氨基残基非常接​​近。 a9分别在protomer 2上。列举了对二聚体蛋白几何结构的一般推断,该二聚体蛋白的几何结构可通过对使用这种低密度基质交联方法获得的(以及未见的)交联复合物进行分析得出。修饰的凝集素基质可用于研究糖蛋白的三维结构,特别是不可结晶的寡聚物。

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