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首页> 外文期刊>International journal of mass spectrometry >An electrospray ionization mass spectrometric study of the giant, extracellular, hexagonal bilayer hemoglobin of the leech Haemopis grandis provides a complete enumeration of its subunits
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An electrospray ionization mass spectrometric study of the giant, extracellular, hexagonal bilayer hemoglobin of the leech Haemopis grandis provides a complete enumeration of its subunits

机译:电喷雾电离质谱研究study的巨大细胞外六角形双层血红蛋白,提供了其亚基的完整计数

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The complex, multiply charged electrospray ionization mass spectra of the extracellular, approx 3500 kDa, hexagonal bilayer hemoglobin from the leech Haemopis grandis and its carbamidomethylated, reduced and reduced/carbamidomethylated forms were deconvoluted using a maximum entropy approach to provide the corresponding zero-charge spectra. Three groups of peaks were observed: monomeric globin chains a1-a4 at approx 17 kDa (16 634.1, 17 013.4, 17 592.9, and 17 573.3 Da with relative intensities of 16:4:12:1, respectively), linker chains L1-L3 at approx 24 kDa (24 004.2, 24 449.2 and 24 548.3 Da, with relative intensities of 5:1:2.5, respectively) and subunits D1 and D2 at 32 501.1 and 32 629.6 Da, respectively, with equal intensities. Reduction of the native hemoglobin with dithiothreitol resulted in a decrease in the mass of linker L2 by 115.1 Da, indicating cysteinylation, the disappearance of subunits D1 and D2 and the concomitant appearance of globin chains b (16 098.8 Da), c1 (16 403.9 Da), and c2 (16 532.5 Da), suggesting that subunits D1 and D2 are disulfide-bonded dimers b + c1 and b + c2, respectively. All the globin chains appear to have one intrachain disulfide bond, and globins b, c1, and c2 have an additional Cys which forms the interchain disulfide bond in D1 and D2. The linkers L1-L3 contain 10, 9 and 10 Cys residues, respectively, all forming intrachain disulfide bonds, except for the odd residue in L2 which is proposed to be the site of cysteinylation. The relative intensities of the three groups of peaks a1 + a2 + a3 + a4:L1 + L2 + L3:D1 + D2 are 1.65:1.7:0.8 in native hemoglobin. All the subunits in a second sample evinced substantial glycosylation, with up to five hexoses per subunit. A model of the quaternary structure of Haemopis hemoglobin is proposed, consisting of 72 monomeric globins and 36 globin dimers for a total of 144 globin chains and 42 linkers with a calculated total mass of 3506 kDa.
机译:使用最大熵方法对来自水Ha血emo的细胞外约3500 kDa六角形双层血红蛋白及其碳酰氨基甲基化,还原和还原/碳酰氨基甲基化形式的复杂的,多电荷电喷雾电离质谱进行卷积,以提供相应的零电荷光谱。观察到三组峰:单体珠蛋白链a1-a4约17 kDa(16 634.1、17 013.4、17 592.9和17 573.3 Da,相对强度分别为16:4:12:1),接头链L1- L3约为24 kDa(24 004.2、24 449.2和24 548.3 Da,相对强度分别为5:1:2.5),亚基D1和D2分别为32 501.1 Da和32 629.6 Da,强度相同。用二硫苏糖醇还原天然血红蛋白会使接头L2的质量降低115.1 Da,这表明半胱氨酸化,D1和D2亚基的消失以及球蛋白链b(16 098.8 Da),c1(16 403.9 Da)的伴随出现)和c2(16 532.5 Da),表明亚基D1和D2分别是二硫键结合的二聚体b + c1和b + c2。所有的球蛋白链似乎都具有一个链内二硫键,而球蛋白b,c1和c2具有一个额外的Cys,它们在D1和D2中形成链间二硫键。连接子L1-L3分别包含10、9和10个Cys残基,除了L2中的奇数残基被认为是半胱氨酸化的位点之外,全部形成链内二硫键。天然血红蛋白中三组峰a1 + a2 + a3 + a4:L1 + L2 + L3:D1 + D2的相对强度为1.65:1.7:0.8。第二个样品中的所有亚基均表现出明显的糖基化,每个亚基具有多达五个己糖。提出了一种血球蛋白血红蛋白的四级结构模型,该模型由72个单体球蛋白和36个球蛋白二聚体组成,总共144个球蛋白链和42个连接子,总质量为3506 kDa。

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