首页> 外文OA文献 >Nuclear and mitochondrial splice forms of human uracil-DNA glycosylase contain a complex nuclear localisation signal and a strong classical mitochondrial localisation signal, respectively.
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Nuclear and mitochondrial splice forms of human uracil-DNA glycosylase contain a complex nuclear localisation signal and a strong classical mitochondrial localisation signal, respectively.

机译:人尿嘧啶-DNA糖基化酶的核和线粒体剪接形式分别包含复杂的核定位信号和强的经典线粒体定位信号。

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摘要

Nuclear (UNG2) and mitochondrial (UNG1) forms of human uracil-DNA glycosylase are both encoded by the UNG gene but have different N-terminal sequences. We have expressed fusion constructs of truncated or site-mutated UNG cDNAs and green fluorescent protein cDNA and studied subcellular sorting. The unique 44 N-terminal amino acids in UNG2 are required, but not sufficient, for complete sorting to nuclei. In this part the motif R17K18R19is essential for sorting. The complete nuclear localization signal (NLS) in addition requires residues common to UNG2 and UNG1 within the 151 N-terminal residues. Replacement of certain basic residues within this region changed the pattern of subnuclear distribution of UNG2. The 35 unique N-terminal residues in UNG1 constitute a strong and complete mitochondrial localization signal (MLS) which when placed at the N-terminus of UNG2 overrides the NLS. Residues 11-28 in UNG1 have the potential of forming an amphiphilic helix typical of MLSs and residues 1-28 are essential and sufficient for mitochondrial import. These results demonstrate that UNG1 contains a classical and very strong MLS, whereas UNG2 contains an unusually long and complex NLS, as well as subnuclear targeting signals in the region common to UNG2 and UNG1.
机译:人尿嘧啶-DNA糖基化酶的核(UNG2)和线粒体(UNG1)形式均由UNG基因编码,但具有不同的N末端序列。我们已经表达了截断或定点突变的UNG cDNA和绿色荧光蛋白cDNA的融合构建体,并研究了亚细胞分选。 UNG2中唯一的44个N末端氨基酸是必需的,但不足以完全分类到细胞核。在此部分中,主题R17K18R19对于排序至关重要。此外,完整的核定位信号(NLS)还需要151个N端残基中UNG2和UNG1共有的残基。在该区域内某些碱性残基的替换改变了UNG2的亚核分布模式。 UNG1中的35个独特的N末端残基构成了一个强大而完整的线粒体定位信号(MLS),将其置于UNG2的N端时会覆盖NLS。 UNG1中的残基11-28有可能形成MLS的两亲性螺旋,而残基1-28对于线粒体的导入至关重要且足够。这些结果表明,UNG1包含经典且非常强大的MLS,而UNG2包含异常长且复杂的NLS,以及UNG2和UNG1共有区域中的亚核靶向信号。

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