Properties of lectins from snails of the genus Helix probed by monoclonal antibodies.

H A Schneider
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Abstract

Monoclonal antibodies were raised against the lectin of Helix pomatia (HPL). Besides antibodies bearing the more common gamma and kappa chains, antibodies with alpha, mu and lambda 2 chains were elicited. The anti-HPL antibodies are expected to be useful in studies on HPL biogenesis and HPL substructure and in studies concerned with the binding of HPL to cell surfaces. Binding of carbohydrates to HPL impaired the binding of anti-HPL antibodies. One to 3 mM GalNAc inhibited HPL-binding in two out of nine antibodies. None of the antibodies bound in the presence of micrograms per ml of the polyvalent blood group A-substance from hog stomach. Similarly, all anti-HPL antibodies were prevented from binding if non-inhibitory concentrations of A-substance were supplemented with GalNAc. Lectins from Helix aspersa (HAL) and Helix lucorum (HLL) differed from HPL in antigenic properties. Only one anti-HPL antibody each bound these lectins as well as HPL. Binding of lectins of Cepaea and Rapana was scarcely detectable. Most of the anti-HPL antibodies and the multivalent HPL-antigens formed precipitation lines in double diffusion tests. At least two antibodies (IgMs) did so with HLL but none with HAL. The possibility that antibodies were selected because of unknown interactions between HPL and the carbohydrate moieties of certain fractions of antibodies was excluded by raising the antibodies in the presence of tunicamycin to inhibit N-glycosylation.

单克隆抗体检测螺旋属蜗牛凝集素的性质。
制备了针对梨果凝集素的单克隆抗体。除了含有更常见的gamma和kappa链的抗体外,还能诱导出含有α、mu和lambda 2链的抗体。抗HPL抗体有望在HPL生物发生和HPL亚结构的研究以及HPL与细胞表面结合的研究中发挥重要作用。碳水化合物与HPL的结合破坏了抗HPL抗体的结合。1 ~ 3 mM GalNAc抑制了9种抗体中2种的hpl结合。在每毫升猪胃多价a型血物质中存在微克的情况下,没有抗体结合。同样,如果在非抑制性浓度的a物质中添加GalNAc,则所有抗hpl抗体都被阻止结合。从芦笋螺旋体(HAL)和芦笋螺旋体(HLL)中提取的凝集素在抗原性上与HPL不同。只有一种抗HPL抗体分别结合这些凝集素和HPL。几乎检测不到Cepaea和Rapana凝集素的结合。双扩散试验中,大多数抗hpl抗体和多价hpl抗原形成沉淀线。至少有两种抗体(IgMs)对HLL有这样的作用,但对HAL没有。通过在tunicamycin存在下提高抗体抑制n -糖基化,排除了由于HPL与抗体某些部分的碳水化合物部分之间未知的相互作用而选择抗体的可能性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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