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Processing of artificial peptide-DNA-conjugates by the mitochondrial intermediate peptidase (MIP).

机译:用线粒体中间肽酶(MIP)处理人工肽-DNA缀合物。

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摘要

Import of DNA from the cytoplasm into the mitochondrial matrix is an obligatory step for an in organello site-directed mutagenesis or gene therapy approach on mitochondrial DNA diseases. In this context, we have developed an artificial DNA translocation vector that is composed of the mitochondrial signal peptide of the ornithine transcarbamylase (OTC) and a DNA moiety. While this vector is capable of directing attached passenger molecules to the mitochondrial matrix, the recognition of this artificial molecule by the endogenous mitochondrial signal peptide processing machinery as well as the cleavage of the peptide plays a pivotal role in the release of the attached DNA. To study the proteolytic processing of the artificial vector, various signal peptide-DNA-conjugates were treated with purified mitochondrial intermediate peptidase. When the leader peptide is directly linked to the DNA moiety without an intervening spacer, MIP processing is prevented. Cleavage of the peptide can be restored, however, when the first ten amino acid residues of the mature part of OTC are appended at the carboxy-terminal end of the signal peptide. Our results show that artificial peptide-DNA-conjugates are recognized by the mitochondrial proteolytic machinery, and therefore an interference of the peptide with the DNA function can be excluded.
机译:将DNA从细胞质从细胞质导入线粒体基质是用于在线粒体DNA疾病的细胞器位点定向诱变或基因治疗方法中的义务步骤。在这种情况下,我们开发了一种人工DNA易位载体,其由鸟氨酸转基氨酰胺(OTC)和DNA部分的线粒体信号肽组成。虽然该载体能够将附着的乘客分子引导到线粒体基质,但是通过内源性线粒体信号肽加工机械识别该人造分子,以及肽的裂解在附着的DNA的释放中起着枢轴作用。为了研究人工载体的蛋白水解加工,用纯化的线粒体中间肽酶处理各种信号肽-DNA缀合物。当前导肽直接连接到没有介入间隔物的DNA部分时,防止MIP处理。肽的切割可以恢复,但是,当OTC成熟部分的前十个氨基酸残基被追加在信号肽的羧基末端时。我们的结果表明,人工肽-DNA缀合物被线粒体蛋白水解机械识别,因此可以排除肽与DNA函数的干扰。

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