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马铃薯(茄属)凝集素的化学修饰及其对血凝活性影响的研究。

Studies on the chemical modification and potato (Solanum tuberosum) lectin and its effect on haemagglutinating activity.

作者信息

Ashford D, Menon R, Allen A K, Neuberger A

出版信息

Biochem J. 1981 Nov 1;199(2):399-408. doi: 10.1042/bj1990399.

Abstract
  1. Modification of potato (Solanum tuberosum) lectin with acetic anhydride blocked 5.1 amino and 2.7 tyrosyl groups per molecule of lectin and decreased the haemagglutinating activity of the lectin. De-O-acetylation regenerated 2.0 of the tyrosyl groups and resulted in a recovery of activity. 2. Modification with citraconic anhydride or cyclohexane-1,2-dione did not greatly affect activity, although modification of amino and arginyl groups could be demonstrated. 3. Treatment with tetranitromethane nitrated 3.7 tyrosine residues per molecule of lectin with concomitant loss of activity. The presence of 0.1m-NN'N''-triacetylchitotriose (a potent inhibitor of the lectin) in the reaction medium protected all the tyrosyl residues from nitration and the lectin was fully active. 4. Modification of tryptophyl groups with 2-hydroxy-5-nitrobenzyl bromide and 2,3-dioxoindoline-5-sulphonic acid modified 0.9 and 2.6 residues per molecule of lectin respectively with a loss of activity in each case. Reaction of potato lectin with 2,3-dioxoindoline-5-sulphonic acid in the presence of inhibitor protected 2.4 residues of tryptophan from the reagent. Loss of haemagglutination activity was prevented under these conditions. 5. Reaction of carboxy groups, activated with carbodi-imide, with alpha-aminobutyric acid methyl ester led to the incorporation of 5.3 residues of the ester per molecule of lectin. Presence of inhibitor in this case, although protecting activity, did not prevent modification of carboxy groups; in fact an increase in the number of modified residues was seen. This effect could be imitated by performing the reaction in 8m-urea. In both cases the number of carboxy groups modified was close to the total number of free carboxy groups as determined by the method of Hoare & Koshland [(1967) J. Biol. Chem.242, 2447-2453]. Guanidination of lysine residues after carboxy-group modification gave less homoarginine than did the unmodified lectin under the same conditions, suggesting the formation of intramolecular cross-links during carbodi-imide activation. 6. It is suggested from the results presented that amino, arginyl, methionyl, histidyl and carboxyl groups are not involved in the activity of the lectin and that tyrosyl and tryptophyl groups are very closely involved. These findings are similar to those reported for other proteins that bind N-acetylglucosamine oligomers and also fit the general trend in other lectins.
摘要
  1. 用乙酸酐对马铃薯(茄属块茎)凝集素进行修饰,每分子凝集素封闭了5.1个氨基和2.7个酪氨酰基,并降低了凝集素的血凝活性。脱O - 乙酰化使2.0个酪氨酰基再生,并导致活性恢复。2. 用柠康酸酐或环己烷 - 1,2 - 二酮进行修饰对活性影响不大,尽管可以证明氨基和精氨酰基发生了修饰。3. 用四硝基甲烷处理,每分子凝集素硝化3.7个酪氨酸残基,同时活性丧失。反应介质中存在0.1m - NN'N'' - 三乙酰壳三糖(凝集素的一种有效抑制剂)可保护所有酪氨酰基不被硝化,且凝集素完全有活性。4. 用2 - 羟基 - 5 - 硝基苄基溴和2,3 - 二氧吲哚啉 - 5 - 磺酸修饰色氨酰基,每分子凝集素分别修饰了0.9个和2.6个残基,每种情况下活性均丧失。在抑制剂存在下,马铃薯凝集素与2,3 - 二氧吲哚啉 - 5 - 磺酸反应可保护2.4个色氨酸残基不与试剂反应。在这些条件下可防止血凝活性丧失。5. 用碳二亚胺活化羧基后,与α - 氨基丁酸甲酯反应,每分子凝集素掺入了5.3个酯残基。在这种情况下,抑制剂的存在虽然保护了活性,但并未阻止羧基的修饰;实际上,修饰残基的数量有所增加。在8m - 尿素中进行反应可模拟这种效果。在这两种情况下,修饰的羧基数量接近用霍尔 & 科什兰德方法[(1967)《生物化学杂志》242, 2447 - 2453]测定的游离羧基总数。羧基修饰后对赖氨酸残基进行胍基化,在相同条件下得到的高精氨酸比未修饰的凝集素少,这表明在碳二亚胺活化过程中形成了分子内交联。6. 从所呈现的结果表明,氨基、精氨酰基、甲硫氨酰基、组氨酰基和羧基不参与凝集素的活性,而酪氨酰基和色氨酰基与活性密切相关。这些发现与报道的其他结合N - 乙酰葡糖胺寡聚物的蛋白质的发现相似,也符合其他凝集素的一般趋势。

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