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使用铁蛋白偶联的、125I标记的配体研究淋巴瘤细胞系及其毒素抗性变体上毒素和凝集素受体的动力学。

Dynamics of toxin and lectin receptors on a lymphoma cell line and its toxin-resistant variant using ferritin-conjugated, 125I-labeled ligand.

作者信息

Nicolson G L, Smith J R, Hyman R

出版信息

J Cell Biol. 1978 Aug;78(2):565-76. doi: 10.1083/jcb.78.2.565.

Abstract

The dynamics of the toxin Ricinus communis agglutinin II (RCAII or ricin) on cells of a murine lymphoma line (BW5147) and a toxin-resistant variant line (BW5147RicR.3) that is 200 times more resistant than the parent to direct RCAII cytotoxicity were examined using ferritin-conjugated, affinity purified, 125I-labeled RCAII (ferritin-125I-RCAII). Ferritin-125I-RCAII was indistinguishable from native RCAII in quantitative binding and cytotoxicity experiments. When RCAII-sensitive BW5147 and -resistant BW5147RicR.3 cells were labeled with ferritin-125I-RCAII at various toxin concentrations (1--10 microgram/ml), no differences in toxin binding were observed. These same cells were examined by electron microscopy. At low ferritin-125I-RCAII concentrations (1-3 microgram/ml RCAII) where only the parental BW5147 cells were significantly more sensitive to RCAII, toxin receptors were internalized by ferritin-125I-RCAII-induced endocytosis. In parallel experiments, ferritin-125I-RCAII that bound to the resistant BW5147RicR.3 cells remained relatively dispersed or clustered, and there was little evidence of transport into cells via endocytosis. At higher ferritin-125I-RCAII concentrations (greater than 7 microgram/ml RCAII) where both parental and resistant variant cells are sensitive to the cytotoxic effects of RCAII, more ferritin-conjugated toxin was bound, and subsequent endocytosis occurred to a similar degree in both cell types. Endocytosis of ferritin-conjugated concanavalin A was indistinguishable on RCAII-sensitive parental and resistant variant cells at all concentrations tested. The results suggest that a specific defect on the selected BW5147RicR.3 cells prevents RCAII entry into these cells a low toxin concentrations, rendering them more resistant to the cytotoxic effects of RCAII.

摘要

使用铁蛋白偶联、亲和纯化的¹²⁵I标记蓖麻毒素II(铁蛋白 - ¹²⁵I - RCAII),研究了毒素蓖麻凝集素II(RCAII或蓖麻毒素)对小鼠淋巴瘤细胞系(BW5147)和毒素抗性变异细胞系(BW5147RicR.3)细胞的作用,该抗性变异细胞系对直接RCAII细胞毒性的抗性比亲代细胞高200倍。在定量结合和细胞毒性实验中,铁蛋白 - ¹²⁵I - RCAII与天然RCAII无差异。当RCAII敏感的BW5147细胞和抗性BW5147RicR.3细胞在不同毒素浓度(1 - 10微克/毫升)下用铁蛋白 - ¹²⁵I - RCAII标记时,未观察到毒素结合的差异。通过电子显微镜检查这些相同的细胞。在低铁蛋白 - ¹²⁵I - RCAII浓度(1 - 3微克/毫升RCAII)下,仅亲代BW5147细胞对RCAII明显更敏感,毒素受体通过铁蛋白 - ¹²⁵I - RCAII诱导的内吞作用内化。在平行实验中,与抗性BW5147RicR.3细胞结合的铁蛋白 - ¹²⁵I - RCAII保持相对分散或聚集,几乎没有证据表明通过内吞作用转运到细胞中。在高铁蛋白 - ¹²⁵I - RCAII浓度(大于7微克/毫升RCAII)下,亲代细胞和抗性变异细胞对RCAII的细胞毒性作用均敏感,结合的铁蛋白偶联毒素更多,并且两种细胞类型随后的内吞作用程度相似。在所有测试浓度下,铁蛋白偶联伴刀豆球蛋白A在RCAII敏感的亲代细胞和抗性变异细胞上的内吞作用无差异。结果表明,所选的BW5147RicR.3细胞上的特定缺陷可防止RCAII在低毒素浓度下进入这些细胞,使其对RCAII的细胞毒性作用更具抗性。

相似文献

本文引用的文献

1
2
Ricin - a potent inhibitor of protein synthesis.蓖麻毒素——一种强大的蛋白质合成抑制剂。
FEBS Lett. 1972 Feb 15;20(3):327-329. doi: 10.1016/0014-5793(72)80098-x.
7
Ricin: the toxic protein of castor oil seeds.蓖麻毒素:蓖麻油籽中的有毒蛋白质。
Toxicology. 1974 Mar;2(1):77-102. doi: 10.1016/0300-483x(74)90044-4.

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