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刺桐种子中一种D-半乳糖结合凝集素的分离、纯化及理化特性分析

Isolation, purification, and physicochemical characterization of a D-galactose-binding lectin from seeds of Erythrina speciosa.

作者信息

Konozy Emadeldin H E, Bernardes Emerson S, Rosa Cesar, Faca Vitor, Greene Lewis Joel, Ward Richard John

机构信息

Departamento de Biologia e Celular e Molecular e Bioagentes Patognicos, Faculdade de Medicina de Ribeirao Preto, Universidade de Sao Paulo, Ribeirao Preto, CEP 14049-900, SP, Brazil.

出版信息

Arch Biochem Biophys. 2003 Feb 15;410(2):222-9. doi: 10.1016/s0003-9861(02)00695-1.

Abstract

A lectin was isolated from the saline extract of Erythrina speciosa seeds by affinity chromatography on lactose-Sepharose. The lectin content was about 265 mg/100g dry flour. E. speciosa seed lectin (EspecL) agglutinated all human RBC types, showing no human blood group specificity; however a slight preference toward the O blood group was evident. The lectin also agglutinated rabbit, sheep, and mouse blood cells and showed no effect on horse erythrocytes. Lactose was the most potent inhibitor of EspecL hemagglutinating activity (minimal inhibitory concentration (MIC)=0.25 mM) followed by N-acetyllactosamine, MIC=0.5mM, and then p-nitrophenyl alpha-galactopyranoside, MIC=2 mM. The lectin was a glycoprotein with a neutral carbohydrate content of 5.5% and had two pI values of 5.8 and 6.1 and E(1%)(1 cm) of 14.5. The native molecular mass of the lectin detected by hydrodynamic light scattering was 58 kDa and when examined by mass spectroscopy and SDS-PAGE it was found to be composed of two identical subunits of molecular mass of 27.6 kDa. The amino acid composition of the lectin revealed that it was rich in acidic and hydroxyl amino acids, contained a lesser amount of methionine, and totally lacked cysteine. The N-terminal of the lectin shared major similarities with other reported Erythrina lectins. The lectin was a metaloprotein that needed both Ca(2+) and Mn(2+) ions for its activity. Removal of these metals by EDTA rendered the lectin inactive whereas their addition restored the activity. EspecL was acidic pH sensitive and totally lost its activity when incubated with all pH values between pH 3 and pH 6. Above pH 6 and to pH 9.6 there was no effect on the lectin activity. At 65 degrees C for more than 90 min the lectin was fairly stable; however, when heated at 70 degrees C for 10 min it lost more than 80% of its original activity and was totally inactivated at 80 degrees C for less than 10 min. Fluorescence studies of EspecL indicated that tryptophan residues were present in a highly hydrophobic environment, and binding of lactose to EspecL neither quenched tryptophan fluorescence nor altered lambda(max) position. Treating purified EspecL with NBS an affinity-modifying reagent specific for tryptophan totally inactivated the lectin with total modification of three tryptophan residues. Of these residues only the third modified residue seemed to play a crucial role in the lectin activity. Addition of lactose to the assay medium did not provide protection against NBS modification which indicated that tryptophan might not be directly involved in the binding of haptenic sugar D-galactose. Modification of tyrosine with N-acetylimidazole led to a 50% drop in EspecL activity with concomitant acetylation of six tyrosine residues. The secondary structure of EspecL as studied by circular dichroism was found to be a typical beta-pleated-sheet structure which is comparable to the CD structure of Erythrina corallodendron lectin. Binding of lactose did not alter the EspecL secondary structure as revealed by CD examination.

摘要

通过乳糖 - 琼脂糖亲和层析从刺桐种子的盐提取物中分离出一种凝集素。凝集素含量约为265毫克/100克干面粉。刺桐种子凝集素(EspecL)能凝集所有人类红细胞类型,不表现出人类血型特异性;然而,对O血型有轻微偏好。该凝集素还能凝集兔、羊和小鼠的血细胞,对马红细胞无作用。乳糖是EspecL血凝活性最有效的抑制剂(最小抑制浓度(MIC)=0.25毫摩尔),其次是N - 乙酰乳糖胺,MIC = 0.5毫摩尔,然后是对硝基苯基α - 吡喃半乳糖苷,MIC = 2毫摩尔。该凝集素是一种糖蛋白,中性碳水化合物含量为5.5%,有两个pI值,分别为5.8和6.1,E(1%)(1 cm)为14.5。通过动态光散射检测到的凝集素天然分子量为58 kDa,通过质谱和SDS - PAGE检测发现它由两个分子量为27.6 kDa的相同亚基组成。凝集素的氨基酸组成表明它富含酸性和羟基氨基酸,甲硫氨酸含量较少,完全不含半胱氨酸。凝集素的N端与其他已报道的刺桐凝集素具有主要相似性。该凝集素是一种金属蛋白,其活性需要Ca(2+)和Mn(2+)离子。用EDTA去除这些金属会使凝集素失活,而添加它们则可恢复活性。EspecL对酸性pH敏感,在pH 3至pH 6之间的所有pH值下孵育时会完全失去活性。在pH 6以上至pH 9.6对凝集素活性无影响。在65℃下90分钟以上凝集素相当稳定;然而,在70℃下加热10分钟会失去超过80%的原始活性,在80℃下加热不到10分钟则完全失活。EspecL的荧光研究表明色氨酸残基存在于高度疏水的环境中,乳糖与EspecL的结合既不淬灭色氨酸荧光也不改变λ(max)位置。用对色氨酸特异的亲和修饰试剂NBS处理纯化的EspecL会使凝集素完全失活,三个色氨酸残基被完全修饰。在这些残基中,只有第三个被修饰的残基似乎在凝集素活性中起关键作用。向测定介质中添加乳糖不能防止NBS修饰,这表明色氨酸可能不直接参与半抗原糖D - 半乳糖的结合。用N - 乙酰咪唑修饰酪氨酸会导致EspecL活性下降50%,同时六个酪氨酸残基被乙酰化。通过圆二色性研究发现EspecL的二级结构是典型的β - 折叠片层结构,与珊瑚刺桐凝集素的CD结构相当。CD检测表明乳糖的结合不会改变EspecL的二级结构。

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