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pH(低)插入肽(pHLIP)跨膜不可渗透的鬼笔环肽毒素转位抑制癌细胞增殖。

pH-(low)-insertion-peptide (pHLIP) translocation of membrane impermeable phalloidin toxin inhibits cancer cell proliferation.

机构信息

Department of Molecular Biophysics and Biochemistry, Yale University, P.O. Box 208114, New Haven, CT 06520, USA.

出版信息

Proc Natl Acad Sci U S A. 2010 Nov 23;107(47):20246-50. doi: 10.1073/pnas.1014403107. Epub 2010 Nov 3.

Abstract

We find that pH-(low)-insertion-peptide (pHLIP)-facilitated translocation of phalloidin, a cell-impermeable polar toxin, inhibits the proliferation of cancer cells in a pH-dependent fashion. The monomeric pHLIP inserts its C terminus across a membrane under slightly acidic conditions (pH 6-6.5), forming a transmembrane helix. The delivery construct carries phalloidin linked to its inserting C terminus via a disulfide bond that is cleaved inside cells, releasing the toxin. To facilitate delivery of the polar agent, a lipophilic rhodamine moiety is also attached to the inserting end of pHLIP. After a 3 h incubation at pH 6.1-6.2 with 2-4 μM concentrations of the construct, proliferation in cultures of HeLa, JC, and M4A4 cancer cells is severely disrupted (> 90% inhibition of cell growth). Treated cells also show signs of cytoskeletal immobilization and multinucleation, consistent with the expected binding of phalloidin to F actin, stabilizing the filaments against depolymerization. The antiproliferative effect was not observed without the hydrophobic facilitator (rhodamine). The biologically active delivery construct inserts into 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine lipid bilayers with an apparent pK(a) of ∼6.15, similar to that of the parent pHLIP peptide. Sedimentation velocity experiments show that the delivery construct is predominantly monomeric (> 90%) in solution under the conditions employed to treat cells (pH 6.2, 4 μM). These results provide a lead for antitumor agents that would selectively destroy cells in acidic tumors. Such a targeted approach may reduce both the doses needed for cancer chemotherapy and the side effects in tissues with a normal pH.

摘要

我们发现,pH-(低)插入肽(pHLIP)促进鬼笔环肽(一种细胞不可渗透的极性毒素)的转位,以依赖 pH 的方式抑制癌细胞的增殖。单体 pHLIP 在略酸性条件下(pH 6-6.5)将其 C 端插入膜内,形成跨膜螺旋。递送构建体通过二硫键将鬼笔环肽与其插入的 C 端连接,该二硫键在细胞内被切割,释放出毒素。为了促进极性试剂的递送,还将疏水性罗丹明部分连接到 pHLIP 的插入端。在用 2-4 μM 浓度的构建体在 pH 6.1-6.2 孵育 3 小时后,HeLa、JC 和 M4A4 癌细胞培养物中的增殖受到严重破坏(> 90%的细胞生长抑制)。处理过的细胞还表现出细胞骨架固定和多核化的迹象,这与鬼笔环肽与 F 肌动蛋白的预期结合一致,稳定纤维丝防止解聚。没有疏水性促进剂(罗丹明)时,没有观察到抗增殖作用。生物活性递送构建体以约 6.15 的表观 pK(a)插入 1-棕榈酰-2-油酰-sn-甘油-3-磷酸胆碱脂质双层,与亲本 pHLIP 肽相似。沉降速度实验表明,在用于处理细胞的条件下(pH 6.2,4 μM),递送构建体在溶液中主要是单体(> 90%)。这些结果为抗肿瘤药物提供了一个先导,这些药物可以选择性地破坏酸性肿瘤中的细胞。这种靶向方法可能会降低癌症化疗所需的剂量,并减少正常 pH 组织中的副作用。

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本文引用的文献

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