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广泛使用的凝集素与寡糖和植物多糖阵列的特异性研究。

Specificity of widely used lectins as probed with oligosaccharide and plant polysaccharide arrays.

机构信息

Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry, Russian Academy of Sciences, Miklukho-Maklaya Str, 16/10, Moscow, 117997, Russia.

National Medical Research Center for Obstetrics, Gynecology and Perinatology Named After Academician V.I. Kulakov of the Ministry of Health of Russian Federation, Moscow, Russia.

出版信息

Histochem Cell Biol. 2024 Dec;162(6):495-510. doi: 10.1007/s00418-024-02323-8. Epub 2024 Aug 25.

Abstract

Glycan-binding specificity was studied for Jacalin, RCA 120, SBA, PHA-L, PHA-E, WGA, UEA, AAL, LTL, LEL, SNA, DSA, LCA, MAH and Con A, lectins widely used in histochemistry. Oligosaccharide- and polysaccharide-based glycan arrays were applied. Expected specificity was confirmed for only 6 of the 15 lectins and the glycan binding profiles of some lectins were dramatically broader than generally accepted. WGA, LEL and DSA known as chitooligosaccharide-specific, were unexpectedly polyreactive, binding to other glycans with the same affinity as to chitobiose, ABH antigens and oligolactosamines (unsubstituted and sialylated). SBA, in addition to expected binding to glycans with terminal GalNAcα, also had high affinity for the GM1 ganglioside. MAH demonstrated much higher affinity to a variety of sulfated glycans compared to Neu5Acα2-3Galβ1-3GalNAcα. Contrary to the common view, LCA demonstrated the maximum binding to (GlcNAcβ1-2Manα1)-3,6-Manβ1-4GlcNAcβ1-4GlcNAc N-glycan, while it had no interaction with corresponding Gal or Neu5Ac terminated versions. This observed polyreactivity of some lectins casts doubt on their use in accurately determining the presence of a specific glycan structure by histochemical studies. However, comparisons of sera from healthy and diseased individuals with help of a lectin array can easily establish differences in glycosylation patterns and presumptive glycan identities, which can later be clarified using more accurate methods of structural analysis.

摘要

聚糖结合特异性研究了 Jacalin、RCA 120、SBA、PHA-L、PHA-E、WGA、UEA、AAL、LTL、LEL、SNA、DSA、LCA、MAH 和 Con A,这些凝集素广泛应用于组织化学。应用了寡糖和多糖基聚糖阵列。仅确认了 15 种凝集素中的 6 种具有预期的特异性,并且一些凝集素的聚糖结合谱比通常接受的要广泛得多。WGA、LEL 和 DSA 被认为是壳寡糖特异性的,但出乎意料的是多反应性,与壳二糖、ABH 抗原和寡乳糖胺(未取代和唾液酸化)具有相同的亲和力。SBA 除了预期与末端 GalNAcα的聚糖结合外,还对 GM1 神经节苷脂具有高亲和力。MAH 与各种硫酸化聚糖的亲和力比 Neu5Acα2-3Galβ1-3GalNAcα高得多。与普遍观点相反,LCA 对(GlcNAcβ1-2Manα1)-3,6-Manβ1-4GlcNAcβ1-4GlcNAc N-聚糖的结合最大,而与相应的 Gal 或 Neu5Ac 末端版本没有相互作用。一些凝集素的这种多反应性使人怀疑它们在通过组织化学研究准确确定特定聚糖结构的存在方面的应用。然而,使用凝集素阵列比较健康和患病个体的血清可以很容易地确定糖基化模式和假定的聚糖身份的差异,然后可以使用更准确的结构分析方法来澄清这些差异。

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