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Application of Engineered Carrot Antifreeze Protein in the Cryopreservation of Rice Cells by Adsorbing into Ice surface to Inhibit Recrystallization

机译:在冰面上吸附到凝冰中的米细胞冷冻保存中的工程红萝萝萝卜抗冻蛋白在抑制重结晶中的应用

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The E. coli expressed carrot antifreeze protein (DcAFP) was purified by preparative HPLC, refolded by dialysis, and checked by analytical HPLC and SDS-PAGE. The gradient-concentrations of DcAFP in 3% glycerol were used to cryopreserve rice single cell by vitrification at -25°C, -75°C and -180°C. The result showed that DcAFP, at optimal concentration of 0.1 mg/ml, can visibly inhibit the liquid recrystallization of thawed rice cells. DcAFP treated rice cells had higher viability even than positive control and facilitated the efficient daughter cell division. The average diameter of inhibited ice crystals was about 1.0μm that was far less than that of rice cell, and was the reason for the decrease of the rice cell damage. The result of molecular dynamics simulations suggested that DcAFP can adsorb into 1010 plane of ice crystal to form an imperfect surface complementarity, hence to inhibit the growth and recrystallization of ice granules. We modeled the interactions among rice cell, DcAFP and ice, and suggested that DcAFP can stack around the cell membrane by interaction. Therefore, the adsorbing of DcAFP to the ice surfaces can protect the rice cells from the damage of the ice crystals.
机译:通过制备型HPLC纯化大肠杆菌表达的胡萝卜抗冻蛋白(DCAFP),通过透析来折叠,并通过分析HPLC和SDS-PAGE检查。使用3%甘油中的DCAFP的梯度浓度通过玻璃化在-25℃,-75℃和-180℃下冷冻米单细胞。结果表明,在最佳浓度为0.1mg / ml的DCAFP可以明显抑制解冻米细胞的液体重结晶。 DCAFP处理的米细胞具有较高的活力,即使是阳性对照,促进了有效的子细胞分裂。抑制冰晶的平均直径约为1.0μm,远低于水稻细胞,是水稻细胞损伤降低的原因。分子动力学模拟的结果表明,DCAFP可以吸附到1010平面的冰晶晶体中以形成不完美的表面互补性,因此抑制冰颗粒的生长和再结晶。我们建模了米细胞,DCAFP和冰之间的相互作用,并建议DCAFP可以通过相互作用围绕细胞膜堆叠。因此,DCAFP对冰表面的吸附可以保护水稻细胞免受冰晶的损伤。

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