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动质体鞭毛虫:用荧光素偶联凝集素检测表面反应性碳水化合物。

Kinetoplastid flagellates: surface-reactive carbohydrates detected by fluorescein-conjugated lectins.

作者信息

Ghosh D K, Ghosh A K, Ghosh K N, De A, Bhattacharya A

机构信息

Department of Zoology, University of Calcutta, India.

出版信息

J Parasitol. 1990 Feb;76(1):130-3.

PMID:2299519
Abstract

Membrane-associated carbohydrate residues of 3 isolates of Leishmania derived from etiological agents of visceral leishmaniasis (VL), postkala-azar dermal leishmaniasis (PKDL), and cutaneous leishmaniasis (CL), as well as 2 other nonpathogenic insect gut kinetoplastid flagellates, Bodo sp. and Herpetomonas sp., were characterized with the aid of 8 fluorescein-conjugated lectins. Four lectins, concanavalin A, Dolichos biflorus, phytohemagglutinin P, Ricinus communis agglutinin, bound to all kinetoplastid flagellates at different concentrations. All Leishmania promastigotes showed reactions with Ulex agglutinin. Although these lectins were bound to all kinetoplastids, the site and intensity of binding was different. All skin-dwelling Leishmania parasites, viz., Leishmania donovani of PKDL and Leishmania tropica of CL showed unique selectivity toward peanut agglutinin (PNA), soybean agglutinin, and wheatgerm agglutinin (WGA). More interestingly, Herpetomonas showed positive fluorescence with PNA and WGA, whereas Bodo was negative. The results demonstrated that no lectin could distinguish between the pathogenic and nonpathogenic status of kinetoplastid flagellates. Moreover, the antigenic (carbohydrate) profiles of Herpetomonas corresponded more closely to those of L. tropica, whereas Bodo shared some common lectin receptors with L. donovani of VL.

摘要

对源自内脏利什曼病(VL)、黑热病后皮肤利什曼病(PKDL)和皮肤利什曼病(CL)病原体的3株利什曼原虫的膜相关碳水化合物残基,以及另外2种非致病性昆虫肠道动基体鞭毛虫——波豆虫属和密滴虫属,借助8种荧光素偶联凝集素进行了表征。4种凝集素,即伴刀豆球蛋白A、双花扁豆凝集素、植物血凝素P、蓖麻凝集素,在不同浓度下均与所有动基体鞭毛虫结合。所有利什曼原虫前鞭毛体均与荆豆凝集素发生反应。尽管这些凝集素均与所有动基体结合,但结合位点和强度有所不同。所有寄生于皮肤的利什曼原虫,即PKDL的杜氏利什曼原虫和CL的热带利什曼原虫,对花生凝集素(PNA)、大豆凝集素和麦胚凝集素(WGA)均表现出独特的选择性。更有趣的是,密滴虫对PNA和WGA呈阳性荧光,而波豆虫呈阴性。结果表明,没有一种凝集素能够区分动基体鞭毛虫的致病和非致病状态。此外,密滴虫的抗原(碳水化合物)谱与热带利什曼原虫的更为接近,而波豆虫与VL的杜氏利什曼原虫有一些共同的凝集素受体。

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