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精氨酸残基比赖氨酸残基更有效地引发奥曲肽的细胞摄取。

Arginine residues are more effective than lysine residues in eliciting the cellular uptake of onconase.

机构信息

Medical Scientist Training Program and Biophysics Graduate Program, University of Wisconsin-Madison, Madison, Wisconsin 53706, United States.

出版信息

Biochemistry. 2011 Nov 29;50(47):10293-9. doi: 10.1021/bi200979k. Epub 2011 Nov 4.

Abstract

Onconase is an amphibian member of the pancreatic ribonuclease family of enzymes that is in clinical trials for the treatment of cancer. Onconase, which has an abundance of lysine residues, is internalized by cancer cells through endocytosis in a mechanism similar to that of cell-penetrating peptides. Here, we compare the effect of lysine versus arginine residues on the biochemical attributes necessary for Onconase to elicit its cytotoxic activity. In the variant R-Onconase, 10 of the 12 lysine residues in Onconase are replaced with arginine, leaving only the two active-site lysines intact. Cytometric assays quantifying internalization showed a 3-fold increase in the internalization of R-Onconase compared with Onconase. R-Onconase also showed greater affinity for heparin and a 2-fold increase in ribonucleolytic activity. Nonetheless, arginine substitution endowed only a slight increase in toxicity toward human cancer cells. Analysis of denaturation induced with guanidine-HCl showed that R-Onconase has less conformational stability than does the wild-type enzyme; moreover, R-Onconase is more susceptible to proteolytic degradation. These data indicate that arginine residues are more effective than lysine in eliciting cellular internalization but can compromise other aspects of protein structure and function.

摘要

奥曲肽是一种具有生物活性的蛙皮素,属于胰腺核糖核酸酶家族的酶,目前正在进行癌症治疗的临床试验。奥曲肽含有丰富的赖氨酸残基,通过内吞作用被癌细胞内化,其内化机制类似于细胞穿透肽。在这里,我们比较了赖氨酸与精氨酸残基对奥曲肽发挥其细胞毒性活性所需的生化特性的影响。在变体 R-Onconase 中,奥曲肽中的 12 个赖氨酸残基中有 10 个被精氨酸取代,仅保留两个活性部位的赖氨酸完整。定量分析内化的细胞计数实验表明,R-Onconase 的内化量是奥曲肽的 3 倍。R-Onconase 对肝素的亲和力也更高,核糖核酸酶活性增加了 2 倍。尽管如此,精氨酸取代只赋予了对人类癌细胞的轻微毒性增加。用盐酸胍诱导变性分析表明,R-Onconase 的构象稳定性低于野生型酶;此外,R-Onconase 更容易被蛋白水解降解。这些数据表明,精氨酸残基比赖氨酸更有效地引发细胞内化,但可能会影响蛋白质结构和功能的其他方面。

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