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首页> 外文期刊>Molecules and cells >9-Polylysine Protein Transduction Domain: Enhanced Penetration Efficiency of Superoxide Dismutase into Mammalian Cells and Skin
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9-Polylysine Protein Transduction Domain: Enhanced Penetration Efficiency of Superoxide Dismutase into Mammalian Cells and Skin

机译:9聚赖氨酸蛋白转导域:增强的超氧化物歧化酶渗透进入哺乳动物细胞和皮肤的效率。

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摘要

Antioxidant enzymes, such as superoxide dismutase (SOD) and catalase (CAT), have been considered to have a beneficial effect against various diseases that are mediated by the reactive oxygen species (ROS). Although a variety of modified recombinant antioxidant enzymes have been generated to protect against oxidative stresses, the lack of their transduction ability into cells resulted in a limited ability to detoxify intracellular ROS. To render the SOD enzyme capable of detoxifying intracellular ROS when added extracellularly, cell-permeable recombinant SOD proteins were generated. A human Cu,Zn-superoxide dismutase (Cu,Zn-SOD) gene was fused with a gene fragment that encodes the 9 amino acids Tat protein transduction domain (RKKRRQRRR) of HIV-1 and lysine rich peptide (KKKKKKKKK) in a bacterial expression vector in order to produce a genetic in-frame Tat-SOD and 9Lys-SOD fusion protein, respectively. The expressed and purified Tat-SOD and 9Lys-SOD fusion proteins can transduce into human fibroblast cells, and they were enzymatically active and stable for 24 h. The cell viability of the fibroblast cells that were treated with paraquat, an intracellular superoxide anion generator, was increased by the transduced Tat-SOD or 9Lys-SOD. The transduction efficacy of 9Lys-SOD was more efficient than that of Tat-SOD. We evaluated the ability of the SOD fusion proteins to transduce into animal skin. This analysis showed that Tat-SOD and 9Lys-SOD fusion proteins efficiently penetrated into the epidermis as well as the dermis of the subcutaneous layer, when sprayed on mice skin (judged by the immunohistochemistry and specific enzyme activities). The enzymatic activity of the transduced 9Lys-SOD was higher than that of Tat-SOD, indicating that the penetration of 9Lys-SOD was more efficient when put into the skin. These results suggest Tat-SOD and 9Lys-SOD fusion proteins can be used as anti-aging cosmetics, or in protein therapy, for various disorders that are related to this antioxidant enzyme and ROS.
机译:抗氧化剂,例如超氧化物歧化酶(SOD)和过氧化氢酶(CAT),被认为对由活性氧(ROS)介导的各种疾病具有有益作用。尽管已经产生了多种修饰的重组抗氧化剂,以抵抗氧化应激,但是由于缺乏将其转导到细胞中的能力,导致解毒细胞内ROS的能力有限。为了使SOD酶在细胞外添加时能够解毒细胞内ROS,产生了细胞可渗透的重组SOD蛋白。将人类铜,锌超氧化物歧化酶(Cu,Zn-SOD)基因与编码细菌表达中HIV-1的9个氨基酸的Tat蛋白转导域(RKKRRQRRR)和富含赖氨酸的肽(KKKKKKKKK)的基因片段融合在一起为了分别产生遗传框内Tat-SOD和9Lys-SOD融合蛋白,我们使用了这种载体。表达和纯化的Tat-SOD和9Lys-SOD融合蛋白可以转导到人成纤维细胞中,并且具有酶活性和稳定的24小时。通过转导的Tat-SOD或9Lys-SOD,用百草枯(一种细胞内超氧阴离子产生剂)处理的成纤维细胞的细胞活力得到了提高。 9Lys-SOD的转导效率比Tat-SOD的转导效率更高。我们评估了SOD融合蛋白转导进入动物皮肤的能力。该分析表明,当将Tat-SOD和9Lys-SOD融合蛋白喷洒到小鼠皮肤上时(通过免疫组织化学和特定的酶活性判断),它们有效地渗透到表皮以及皮下层的真皮中。转导的9Lys-SOD的酶促活性高于Tat-SOD,表明9Lys-SOD的渗透性在进入皮肤后更为有效。这些结果表明,Tat-SOD和9Lys-SOD融合蛋白可用作抗衰老化妆品或用于蛋白质治疗,用于与该抗氧化酶和ROS相关的各种疾病。

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