Department of Hepatic Surgery IV, Third Affiliated Hospital of Second Military Medical University, Shanghai, 200438, China.
Department of Gynecology and Obstetrics, First Affiliated Hospital of Second Military Medical University, Shanghai, 200438, China.
Sci Rep. 2021 Aug 13;11(1):16507. doi: 10.1038/s41598-021-93055-5.
Hepatocellular carcinoma (HCC) still presents poor prognosis with high mortality rate, despite of the improvement in the management. The challenge for precision treatment was due to the fact that little targeted therapeutics are available for HCC. Recent studies show that metabolic and circulating peptides serve as endogenous switches for correcting aberrant cellular plasticity. Here we explored the antitumor activity of low molecular components in human umbilical serum and identified a high abundance peptide VI-13 by peptidome analysis, which was recognized as the part of glutamyltransferase signal peptide. We modified VI-13 by inserting four arginines and obtained an analog peptide VI-17 to improve its solubility. Our analyses showed that the peptide VI-17 induced rapid context-dependent cell death, and exhibited a higher sensitivity on hepatoma cells, which is attenuated by polyethylene glycol but not necrotic inhibitors such as z-VAD-fmk or necrostatin-1. Morphologically, VI-17 induced cell swelling, blebbing and membrane rupture with release of cellular ATP and LDH into extracellular media, which is hallmark of oncotic process. Mechanistically, VI-17 induced cell membrane pore formation, degradation of α-tubulin via influx of calcium ion. These results indicated that the novel peptide VI-17 induced oncosis in HCC cells, which could serve as a promising lead for development of therapeutic intervention of HCC.
肝细胞癌 (HCC) 的死亡率仍然很高,预后较差,尽管在治疗方面有所改善。精准治疗的挑战在于 HCC 可用的靶向治疗药物很少。最近的研究表明,代谢和循环肽可作为纠正异常细胞可塑性的内源性开关。在这里,我们探索了人脐血清中低分子成分的抗肿瘤活性,并通过肽组学分析鉴定了一种高丰度肽 VI-13,该肽被认为是谷氨酰转移酶信号肽的一部分。我们通过插入四个精氨酸对 VI-13 进行修饰,得到了一种类似物肽 VI-17,以提高其溶解度。我们的分析表明,肽 VI-17 诱导快速的上下文相关细胞死亡,并对肝癌细胞表现出更高的敏感性,这种敏感性可被聚乙二醇减弱,但不能被坏死抑制剂如 z-VAD-fmk 或 necrostatin-1 减弱。形态上,VI-17 诱导细胞肿胀、起泡和细胞膜破裂,同时细胞内 ATP 和 LDH 释放到细胞外介质中,这是胀亡过程的标志。从机制上讲,VI-17 通过钙离子内流诱导细胞膜孔形成和微管蛋白 α 的降解。这些结果表明,新型肽 VI-17 诱导 HCC 细胞发生胀亡,可作为开发 HCC 治疗干预措施的有前途的先导物。