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对多甲藻(Lingulodinium polyedrum)含铁超氧化物歧化酶(SOD)靶向序列的分析表明其在多个细胞区室中发挥作用。

Analysis of the targeting sequences of an iron-containing superoxide dismutase (SOD) of the dinoflagellate Lingulodinium polyedrum suggests function in multiple cellular compartments.

作者信息

Bodył Andrzej, Mackiewicz Paweł

机构信息

Department of Biodiversity and Evolutionary Taxonomy, Zoological Institute, University of Wrocław, ul. Przybyszewskiego 63/77, 51-148 Wrocław, Poland.

出版信息

Arch Microbiol. 2007 Apr;187(4):281-96. doi: 10.1007/s00203-006-0194-5. Epub 2006 Dec 2.

Abstract

One of the proteins targeted to the peridinin plastid of the dinoflagellate Lingulodinium polyedrum is the iron-containing superoxide dismutase (LpSOD). Like dinoflagellate plastid proteins of class II, LpSOD carries a bipartite presequence comprising a signal peptide followed by a transit peptide. Our bioinformatic studies suggest that its signal peptide is atypical, however, and that the entire presequence may function as a mitochondrial targeting signal. It is possible that LpSOD represents a new class of proteins in algae with complex plastids, which are co-targeted to the plastid and mitochondrion. In addition to the ambiguous N-terminal targeting signal, LpSOD contains a potential type-1 peroxisome-targeting signal (PTS1) located at its C-terminus. In accordance with a peroxisome localization of this dismutase, its mRNA has two in-frame AUG codons. Our bioinformatic analyses indicate that the first start codon resides in a much weaker oligonucleotide context than the second one. This suggests that synthesis of the plastid/mitochondrion-targeted and peroxisome-targeted isoforms could proceed through so-called leaky scanning. Moreover, our results show that expression of the two isoforms could be regulated by a 'hairpin' structure located between the first and second start codons.

摘要

针对多甲藻(Lingulodinium polyedrum)的多甲藻素质体的一种蛋白质是含铁超氧化物歧化酶(LpSOD)。与II类甲藻质体蛋白一样,LpSOD带有一个双组分前序列,由一个信号肽和一个转运肽组成。然而,我们的生物信息学研究表明,其信号肽是非典型的,并且整个前序列可能作为线粒体靶向信号发挥作用。LpSOD可能代表了具有复杂质体的藻类中的一类新蛋白质,这类蛋白质同时被靶向到质体和线粒体。除了模糊的N端靶向信号外,LpSOD在其C端还含有一个潜在的1型过氧化物酶体靶向信号(PTS1)。根据这种歧化酶的过氧化物酶体定位,其mRNA有两个符合读框的AUG密码子。我们的生物信息学分析表明,第一个起始密码子所处的寡核苷酸环境比第二个弱得多。这表明靶向质体/线粒体和过氧化物酶体的同工型的合成可能通过所谓的漏扫描进行。此外,我们的结果表明,这两种同工型的表达可能受位于第一个和第二个起始密码子之间的“发夹”结构调控。

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