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Differential intracellular localization of the human and mouse endonuclease III homologs and analysis of the sorting signals.

机译:人和小鼠核酸内切酶III同源物的胞内差异定位和分选信号分析。

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摘要

The mammalian endonuclease III homolog NTH1 is a DNA glycosylase/AP lyase that recognizes oxidized pyrimidine bases. Here, we compared the intracellular localization of human and mouse NTH1 and analyzed their sorting signals by examining expression of enhanced green fluorescent protein (EGFP)-tagged NTH1 protein. Full-length hNTH1 was sorted exclusively into nuclei. Deletion analysis showed that two basic amino acid clusters, which constitute the nuclear localization signal (NLS), are essential for nuclear sorting. Moreover, disruption of the NLS by deletion or substitution of arginine residue(s) altered the localization of the protein to mitochondria. In contrast, most mNTH1 molecules were sorted into mitochondria, with a relatively small amount localized in nuclei. Deletion analysis indicated that the mitochondrial targeting sequence of mNTH1 is contained within the N-terminal 38 amino acids. Alignment of the N-terminal sequence of human and mouse NTH1 showed that mNTH1 lacks a basic amino acid cluster corresponding to one of the NLS sequences found in hNTH1. Nuclear localization of mNTH1 was increased when this NLS sequence was added to mNTH1 through the addition of appropriate amino acids. The fact that transcription of the hNTH1 gene is initiated at multiple sites indicated that three isoforms of hNTH1 protein are translated using different initiation codons. However, no difference in intracellular localization was observed among three isoforms of hNTH1 with different N-terminal sequences.
机译:哺乳动物核酸内切酶III同源物NTH1是一种DNA糖基化酶/ AP裂解酶,可识别氧化的嘧啶碱基。在这里,我们比较了人类和小鼠NTH1在细胞内的定位,并通过检查增强型绿色荧光蛋白(EGFP)标记的NTH1蛋白的表达来分析它们的分类信号。全长hNTH1仅排入细胞核。缺失分析表明,构成核定位信号(NLS)的两个基本氨基酸簇对于核分选至关重要。此外,通过缺失或取代精氨酸残基来破坏NLS改变了蛋白质到线粒体的定位。相反,大多数mNTH1分子被分类为线粒体,相对较少的分子位于细胞核中。缺失分析表明,mNTH1的线粒体靶向序列包含在N端38个氨基酸内。人类和小鼠NTH1的N端序列的比对表明,mNTH1缺少与hNTH1中发现的NLS序列之一相对应的碱性氨基酸簇。当通过添加适当的氨基酸将该NLS序列添加到mNTH1中时,mNTH1的核定位增加。 hNTH1基因的转录在多个位点启动的事实表明,使用不同的起始密码子翻译了hNTH1蛋白的三种同工型。但是,在具有不同N端序列的hNTH1的三种同工型之间未观察到细胞内定位的差异。

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