首页> 外文期刊>Journal of cell biology >Distribution of cell surface saccharides on pancreatic cells. II. Lectin-labeling patterns on mature guinea pig and rat pancreatic cells.
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Distribution of cell surface saccharides on pancreatic cells. II. Lectin-labeling patterns on mature guinea pig and rat pancreatic cells.

机译:细胞表面糖在胰腺细胞上的分布。二。成熟豚鼠和大鼠胰腺细胞上的凝集素标记模式。

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The surface saccharide composition of collagenase-dispersed pancreatic cells from adult guinea pig and rat glands was examined by using eight lectins and their ferritin conjugates: Concanavalin A (ConA); Lens culinaris (LCL); Lotus tetragonolobus (LTL); Ricinus communis agglutinins I and II (RCA I, RCA II); Soybean agglutinin (SBA); Ulex europeus lectin (UEL); and wheat germ agglutinin (WGA). Binding studies of iodinated lectins and lectin-ferritin conjugates both revealed one population of saturable, high-affinity receptor sites on the total cell population (approximately 95% acinar cells). Electron microscopy, however, revealed differences in lectin-ferritin binding to the plasmalemma of acinar, centroacinar, and endocrine cells. Whereas acinar cells bound heavily all lectin conjugates, endocrine and centroacinar cells were densely labeled only by ConA, LCL, WGA, and RCA I, and possessed few receptors for LTL, UEL, and SBA. Endocrine and centroacinar cells could be differentiated from each other by using RCA II, which binds to centroacinar cells but not to endocrine cells. Some RCA II receptors appeared to be glycolipids because they were extracted by ethanol and chloroform-methanol in contrast to WGA receptors which resisted solvent treatment but were partly removed by papain digestion. RCA I receptors were affected by neither treatment. The apparent absence of receptors for SBA on endocrine and centroacinar cells, and for RCA II on endocrine cells, was reversed by neuraminidase digestion, which suggested masking of lectin receptors by sialic acid. The absence of LTL and UEL receptors on endocrine and centroacinar cells was not reversed by neuraminidase. We suggest that the differential lectin-binding patterns observed on acinar, centroacinar, and endocrine cells from the adult pancreas surface-carbohydrate-developmental programs expressed during morphogenesis and cytodifferentiation of the gland.
机译:用八种凝集素及其铁蛋白结合物检测成年豚鼠和大鼠腺体胶原酶分散的胰腺细胞的表面糖类组成:伴刀豆球蛋白A(ConA);晶状体(LCL);莲花四角莲(LTL);蓖麻(Ricinus communis)凝集素I和II(RCA I,RCA II);大豆凝集素(SBA); Ulex europeus血凝素(UEL);和小麦胚芽凝集素(WGA)。碘化凝集素和凝集素-铁蛋白结合物的结合研究都揭示了总细胞群(约95%的腺泡细胞)中有一组饱和的,高亲和力的受体位点。然而,电子显微镜显示,凝集素-铁蛋白与腺泡,腹膜腺泡和内分泌细胞质膜结合的差异。腺泡细胞与所有凝集素结合物紧密结合,而内分泌和中央腺泡细胞仅被ConA,LCL,WGA和RCA I密集标记,几乎没有LTL,UEL和SBA受体。内分泌细胞和中央耳蜗细胞可以通过使用RCA II来区分,RCA II与中央耳蜗细胞结合而不与内分泌细胞结合。一些RCA II受体似乎是糖脂,因为它们是通过乙醇和氯仿-甲醇提取的,而WGA受体则能抵抗溶剂处理,但部分被木瓜蛋白酶消化而除去。两种治疗均未影响RCA I受体。神经氨酸酶消化逆转了内分泌和中央耳蜗细胞上SBA受体的缺失以及内分泌细胞上RCA II受体的缺失,这表明唾液酸掩盖了凝集素受体。神经氨酸酶不能逆转内分泌和中央棘突细胞上不存在LTL和UEL受体。我们建议从腺的形态发生和细胞分化过程中表达的成年胰腺表面碳水化合物发展计划的腺泡,腹腺和内分泌细胞上观察到差异的凝集素结合模式。

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