Banóczi Zoltan, Tantos Agnes, Farkas Attila, Tompa Péter, Friedrich Péter, Hudecz Ferenc
Research Group of Peptide Chemistry, Eötvös L. University, Hungarian Academy of Sciences, P.O. Box 32, 1518 Budapest 112 Hungary.
Bioconjug Chem. 2007 Jan-Feb;18(1):130-7. doi: 10.1021/bc0601976.
Calpains, the intracellular proteolytic enzymes, play important roles in various processes in cells. The lack of calpain or its overexpression is thought to be an underlying factor in some diseases. In this study, we report the synthesis of a new group of cell-penetrating calpastatin-peptide conjugates with the activating capacity of m-calpain intracellularly. In these constructs, peptides related to the calpastatin A or C subunit with the capabiliy of activation of isolated m-calpain was covalently conjugated to the C-terminal of penetratin via amide, thioether, or disulfide bond. These conjugates were prepared by solid-phase synthesis and/or by chemical ligation and properly characterized (MS, HPLC). Our results using isolated m-calpain suggest that conjugation does not interfere with the enzyme-activating effect of the calpastatin peptides; in fact, the efficiency of the conjugates was markedly higher. The conjugates with different bonds showed essentially the same level of activation. Internalization experiments with fluorophore (4-[7-hydroxycoumaryl] acetic acid (Hca) at the N-terminal of penetratin and/or 5(6)-carboxyfluorescein (cf)) labeled conjugates show that these constructs are taken up by COS-7 cells. Using cell lysates produced after incubation with the 1:1 (mol/mol) mixture of calpastatin A and C peptide conjugates, we found a significant calpain activating effect. We also noticed that the conjugate even with a disulfide bond between the components seems to be stable and activate m-calpain after intracellular translocation under the conditions studied. To the best of our knowledge, this is the first report to describe conjugates with an m-calpain activating effect on isolated enzymes and more importantly within living cells after transmembrane delivery. Thus, these conjugates seem to be appropriate as molecular tools to activate intracellular m-calpain and to study calpain functions in living cells.
钙蛋白酶是一种细胞内蛋白水解酶,在细胞的各种过程中发挥着重要作用。钙蛋白酶的缺乏或过表达被认为是某些疾病的潜在因素。在本研究中,我们报告了一组新的具有细胞穿透能力的钙蛋白酶抑制蛋白 - 肽缀合物的合成,这些缀合物在细胞内具有激活 m - 钙蛋白酶的能力。在这些构建体中,与钙蛋白酶抑制蛋白 A 或 C 亚基相关且具有激活分离的 m - 钙蛋白酶能力的肽通过酰胺键、硫醚键或二硫键与穿膜肽的 C 末端共价连接。这些缀合物通过固相合成和/或化学连接制备,并进行了适当的表征(质谱、高效液相色谱)。我们使用分离的 m - 钙蛋白酶的结果表明,缀合不会干扰钙蛋白酶抑制蛋白肽的酶激活作用;事实上,缀合物的效率明显更高。具有不同键的缀合物显示出基本相同的激活水平。用荧光团(穿膜肽 N 末端的 4 - [7 - 羟基香豆素基] 乙酸(Hca)和/或 5(6) - 羧基荧光素(cf))标记的缀合物进行的内化实验表明,这些构建体可被 COS - 7 细胞摄取。使用与钙蛋白酶抑制蛋白 A 和 C 肽缀合物的 1:1(摩尔/摩尔)混合物孵育后产生的细胞裂解物,我们发现了显著的钙蛋白酶激活作用。我们还注意到,即使组分之间存在二硫键的缀合物在研究条件下似乎也很稳定,并且在细胞内转位后能激活 m - 钙蛋白酶。据我们所知,这是第一份描述对分离的酶具有 m - 钙蛋白酶激活作用且更重要的是在跨膜递送后在活细胞内具有该作用的缀合物的报告。因此,这些缀合物似乎适合作为激活细胞内 m - 钙蛋白酶并研究其在活细胞中功能的分子工具。