Gielens C, De Geest N, Xin X Q, Devreese B, Van Beeumen J, Préaux G
Laboratorium voor Biochemie, Katholieke Universiteit Leuven, Belgium.
Eur J Biochem. 1997 Sep 15;248(3):879-88. doi: 10.1111/j.1432-1033.1997.00879.x.
In functional units d and g from the betaC-haemocyanin of the gastropod Helix pomatia, aminoacid analysis in the presence of dimethyl sulfoxide showed the occurrence of seven cysteine residues. Titration with 5,5'-dithiobis(2-nitrobenzoic acid), however, did not reveal any free thiol group. Pepsinolysis at pH 2.0 followed by amino acid analysis and partial sequencing of the cysteine-containing peptides showed that six cysteine residues are involved in the formation of three disulfide bridges at corresponding positions. The results indicated that the remaining cysteine residue is linked by a thioether bridge to a histidine residue located two positions further in the sequence (H. pomatia d Cys60 His62; H. pomatia g Cys66 His68). This residue corresponds to one of the three histidine residues considered to be involved in the coordination of the copper A atom of the dinuclear copper group of the functional units. The presence of the thioether bond was further evidenced by an absorption band at 255 nm and by molecular mass determinations with electrospray mass spectrometry on a peptic peptide from H. pomatia d and on peptides obtained by proteolysis of carboxymethylated H. pomatia d with trypsin and pronase. Upon sequence analysis the cysteine-histidine thioether bridge was cleaved into didehydroalanine (polymers) and 2-thiolhistidine. A peptide with a cysteine-histidine thioether bridge was isolated from pepsinolysates of functional units c, e, f, g and h of Sepia officinalis and unit g of Octopus vulgaris, obtained from haemocyanin of the cephalopods S. officinalis and O. vulgaris. A cysteine-histidine thioether bridge, which was reported previously for tyrosinase of Neurospora crassa, thus seems to be a general feature for functional units of molluscan haemocyanins.
在腹足纲动物玛瑙螺βC-血蓝蛋白的功能单元d和g中,在二甲基亚砜存在下进行氨基酸分析,结果显示有七个半胱氨酸残基。然而,用5,5'-二硫代双(2-硝基苯甲酸)滴定并未检测到任何游离巯基。在pH 2.0条件下进行胃蛋白酶水解,随后进行氨基酸分析和含半胱氨酸肽段的部分测序,结果表明六个半胱氨酸残基参与了在相应位置形成三个二硫键。结果表明,剩余的半胱氨酸残基通过硫醚桥与序列中再往后两个位置的组氨酸残基相连(玛瑙螺d中Cys60与His62相连;玛瑙螺g中Cys66与His68相连)。该残基对应于被认为参与功能单元双核铜基团中铜A原子配位的三个组氨酸残基之一。硫醚键的存在通过255 nm处的吸收带以及对玛瑙螺d的胃蛋白酶肽段、用胰蛋白酶和链霉蛋白酶对羧甲基化的玛瑙螺d进行蛋白水解得到的肽段进行电喷雾质谱分子量测定得到进一步证实。序列分析时,半胱氨酸-组氨酸硫醚桥断裂为脱氢丙氨酸(聚合物)和2-硫基组氨酸。从乌贼血蓝蛋白和普通章鱼血蓝蛋白得到的乌贼功能单元c、e、f、g和h以及普通章鱼功能单元g的胃蛋白酶水解产物中分离出了具有半胱氨酸-组氨酸硫醚桥的肽段。之前在粗糙脉孢菌酪氨酸酶中报道过的半胱氨酸-组氨酸硫醚桥,似乎是软体动物血蓝蛋白功能单元的一个普遍特征。