Expert Laboratory for Life Environments, Department of Genome System Sciences, Graduate School of Nanobiosciences, Yokohama City University, 22-2 Seto, Kanazawa-ku, Yokohama, 236-0027, Japan.
In Vitro Cell Dev Biol Anim. 2011 Dec;47(10):728-34. doi: 10.1007/s11626-011-9462-z. Epub 2011 Oct 20.
Galectin-1 from American bullfrog, RCG1, was isolated to high purity, and its growth inhibitory properties against human cells were examined. The results demonstrated that highly purified RCG1 induced large cell aggregates and revealed cell-type-specific growth inhibition. It significantly inhibited all human leukemia cell lines tested such as HL-60, U937, and K562 cells but did not inhibit human colon cancer cell line, Colo 201, or mouse mammary tumor cell line FM3A cells. Although most of the galectin-induced growth inhibitions are known to be apoptic, RCG1 induced growth arrest and neither apoptosis nor necrosis. RCG1-mediated growth inhibition was specifically suppressed by the corresponding sugar, lactose, but not by sucrose or even the structurally similar sugar, melibiose. Several studies have reported that galectin-mediated biological functions were modulated by charge modification. Since the high purity of RCG1 was demonstrated but a moderate degree of growth inhibition occurred, it is possible protein charge modification was examined by isoelectric focusing, and it was found to be highly heterogeneous in charge. RCG1 binding proteins in human cells were analyzed by lectin blotting using biotinylated RCG1, and lectin blotting revealed that in human cell extracts the specific proteins at molecular weight 37 and 50 kDa possessed the responsive features of RCG1 binding and lactose competition.
从美洲牛蛙中分离出半乳糖凝集素-1(RCG1),并将其高度纯化,检测其对人细胞的生长抑制特性。结果表明,高度纯化的 RCG1 诱导大细胞聚集,并显示出细胞类型特异性的生长抑制。它显著抑制了所有测试的人白血病细胞系,如 HL-60、U937 和 K562 细胞,但不抑制人结肠癌细胞系 Colo 201 或小鼠乳腺肿瘤细胞系 FM3A 细胞。虽然大多数半乳糖凝集素诱导的生长抑制被认为是凋亡,但 RCG1 诱导的生长停滞既不是凋亡也不是坏死。RCG1 介导的生长抑制被相应的糖乳糖特异性抑制,但蔗糖甚至结构相似的糖蜜二糖都不能抑制。有几项研究报道,半乳糖凝集素介导的生物学功能受到电荷修饰的调节。由于已证明 RCG1 的纯度很高,但仅发生中度生长抑制,因此可能对蛋白质电荷修饰进行了等电聚焦分析,结果发现其电荷高度不均一。用人细胞中的生物素化 RCG1 通过凝集素印迹分析 RCG1 的结合蛋白,结果表明在人细胞提取物中,分子量为 37 和 50 kDa 的特定蛋白质具有 RCG1 结合和乳糖竞争的响应特征。