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大鼠正常和再生骨骼肌中凝集素结合的免疫荧光分析。

An immunofluorescent analysis of lectin binding to normal and regenerating skeletal muscle of rat.

作者信息

Gulati A K, Zalewski A A

出版信息

Anat Rec. 1985 Jun;212(2):113-7. doi: 10.1002/ar.1092120202.

Abstract

Ten different fluorescein-conjugated lectins of various known sugar specificities were used to study cell surface glycoconjugates of normal and regenerating rat skeletal muscle. In normal muscle, Canavalia ensiformis agglutinin, Triticum vulgaris agglutinin (wheat germ agglutinin, WGA), Ricinus communis agglutinin-I, and Maclura pomifera agglutinin bound strongly to the endomysial region of the myofibers. No binding was observed in the cytoplasm of the myofibers. Other lectins (Dolichos biflorus agglutinin, Griffonia simplifolia agglutinin I and II, Ulex europaeus agglutinin, Arachis hypogaea agglutinin, Glycine max agglutinin) bound very poorly or not at all in the normal muscle. Skeletal muscle degeneration and regeneration was induced by autotransplantation of the extensor digitorum longus muscle. In the transplanted muscles, the endomysial lectin binding of the degenerating myofibers became weak and lacked continuity, indicating a breakdown of the endomysium. Of all the lectins tested, only WGA revealed intense binding in the myogenic zone of regenerating muscle. As the regeneration progressed, this WGA binding became restricted to the new endomysium. In completely regenerated muscle, binding of all lectins was similar to that seen in normal muscle. The specific binding of WGA to the myogenic zone may be important in identifying factors or glycoconjugates, which constitute a favorable environment for skeletal muscle regeneration.

摘要

使用十种具有不同已知糖特异性的异硫氰酸荧光素共轭凝集素,来研究正常和再生大鼠骨骼肌的细胞表面糖缀合物。在正常肌肉中,刀豆球蛋白A、普通小麦凝集素(麦胚凝集素,WGA)、蓖麻凝集素-I和桑橙凝集素与肌纤维的肌内膜区域强烈结合。在肌纤维的细胞质中未观察到结合。其他凝集素(双花扁豆凝集素、非洲豆蔻凝集素I和II、荆豆凝集素、花生凝集素、大豆凝集素)在正常肌肉中结合非常差或根本不结合。通过自体移植趾长伸肌诱导骨骼肌变性和再生。在移植的肌肉中,变性肌纤维的肌内膜凝集素结合变弱且缺乏连续性,表明肌内膜遭到破坏。在所有测试的凝集素中,只有WGA在再生肌肉的生肌区显示出强烈结合。随着再生的进行,这种WGA结合局限于新的肌内膜。在完全再生的肌肉中,所有凝集素的结合与正常肌肉中的情况相似。WGA与生肌区的特异性结合,对于识别构成骨骼肌再生有利环境的因子或糖缀合物可能很重要。

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