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一种来自寄生真菌少孢节丛孢菌的多特异性盐溶性凝集素。与双孢蘑菇凝集素相比,其结合特异性的相似性。

A multispecific saline-soluble lectin from the parasitic fungus Arthrobotrys oligospora. Similarities in the binding specificities compared with a lectin from the mushroom agaricus bisporus.

作者信息

Rosén S, Bergström J, Karlsson K A, Tunlid A

机构信息

Department of Microbial Ecology, Lund University, Sweden.

出版信息

Eur J Biochem. 1996 Jun 15;238(3):830-7. doi: 10.1111/j.1432-1033.1996.0830w.x.

Abstract

Several fungi can express high levels of saline-soluble and low-molecular-mass lectins that bind to glycoproteins such as fetuin and different mucins but not bind to any monosaccharides. In this paper, we report the binding specificities of such a lectin (designated AOL) isolated from the nematophagous fungus Arthrobotrys oligospora. The results show that AOL is a multispecific lectin that interacts with the following ligands: (a) Several sulfated glycoconjugates including sulfatide, dextran sulfate, and fucoidan. The specificity of this binding was indicated by experiments showing that none of the tested neutral- and sialic-acid-containing glycolipids, chondroitin sulfates B and C, heparin, and polyvinyl sulfate bound to AOL; (b) Phosphatidic acid and phospatidylglycerol, two out of several tested phospholipids. (c) N-linked and O-linked sugar chains bound to intact fetuin. The involvement of such sugar structures was demonstrated by analyzing the binding of AOL to chemically deglycosylated (trifluoromethanesulfonic acid) fetuin. Treating fetuin with O-glycosidase and N-glycosidase indicated that AOL bound to Gal beta GaLNAc alpha-Ser/Thr and to some N-linked complex sugars, respectively. Further assays demonstrated that AOL could interact with several other glycoproteins containing O-linked and/or N-linked sugar chains. The observations that AOL did not bind to free N-linked sugars isolated from fetuin, or to fetuin treated with trypsin or pronase, or to any of the tested neoglycoproteins and glycolipids with neutral- or sialic acid-containing sugars, indicated that the sugar chains need to be bound to an intact peptide backbone to interact with AOL. We have recently shown that the deduced primary structure of AOL has a high similarity to the sequence of a saline-soluble lectin isolated from the mushroom Agaricus bisporus (ABL) (Rosén, S., Kata, M., Persson, Y., Lipniunas, P. H., Wikström, M., van den Hondel, C. A. M. J. J., van den Brink, J. M., Rask, L., Hedén L.-O. and Tunlid, A., see companion paper). It is well known that ABL binds to Gal beta 3GaLNAc alpha-Ser/Thr, and in this paper we demonstrate that ABL binds to sulfatide, phosphatidic acid, phospatidylglycerol, and possibly also to the same N-linked complex sugars as AOL. The above data indicate that AOL and ABL are members of a novel family of fungal lectins sharing similar primary structure and binding properties.

摘要

几种真菌能够表达高水平的盐溶性低分子量凝集素,这些凝集素可与胎球蛋白和不同粘蛋白等糖蛋白结合,但不与任何单糖结合。在本文中,我们报道了从食线虫真菌少孢节丛孢中分离出的一种凝集素(命名为AOL)的结合特异性。结果表明,AOL是一种多特异性凝集素,可与以下配体相互作用:(a)几种硫酸化糖缀合物,包括硫苷脂、硫酸葡聚糖和岩藻依聚糖。实验表明,所测试的含中性和唾液酸的糖脂、硫酸软骨素B和C、肝素以及聚硫酸乙烯均不与AOL结合,从而表明了这种结合的特异性;(b)几种测试磷脂中的两种,即磷脂酸和磷脂酰甘油;(c)与完整胎球蛋白结合的N-连接和O-连接糖链。通过分析AOL与化学去糖基化(三氟甲磺酸)胎球蛋白的结合,证明了此类糖结构的参与。用O-糖苷酶和N-糖苷酶处理胎球蛋白表明,AOL分别与GalβGalNAcα-Ser/Thr和一些N-连接的复合糖结合。进一步的分析表明,AOL可以与其他几种含有O-连接和/或N-连接糖链的糖蛋白相互作用。AOL不与从胎球蛋白中分离出的游离N-连接糖、用胰蛋白酶或链霉蛋白酶处理的胎球蛋白或任何测试的含中性或唾液酸糖的新糖蛋白和糖脂结合,这一观察结果表明,糖链需要与完整的肽主链结合才能与AOL相互作用。我们最近表明,推导的AOL一级结构与从双孢蘑菇中分离出的一种盐溶性凝集素(ABL)的序列高度相似(Rosén, S., Kata, M., Persson, Y., Lipniunas, P. H., Wikström, M., van den Hondel, C. A. M. J. J., van den Brink, J. M., Rask, L., Hedén L.-O. and Tunlid, A., 见配套论文)。众所周知,ABL与Galβ3GalNAcα-Ser/Thr结合,在本文中我们证明ABL与硫苷脂、磷脂酸、磷脂酰甘油结合,并且可能还与和AOL相同的N-连接复合糖结合。上述数据表明,AOL和ABL是一个新的真菌凝集素家族的成员,它们具有相似的一级结构和结合特性。

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