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Phylogenetic Analysis of Nuclear-Encoded RNA Maturases.


ABSTRACT: Posttranscriptional processes, such as splicing, play a crucial role in gene expression and are prevalent not only in nuclear genes but also in plant mitochondria where splicing of group II introns is catalyzed by a class of proteins termed maturases. In plant mitochondria, there are 22 mitochondrial group II introns. matR, nMAT1, nMAT2, nMAT3, and nMAT4 proteins have been shown to be required for efficient splicing of several group II introns in Arabidopsis thaliana. Nuclear maturases (nMATs) are necessary for splicing of mitochondrial genes, leading to normal oxidative phosphorylation. Sequence analysis through phylogenetic tree (including bootstrapping) revealed high homology with maturase sequences of A thaliana and other plants. This study shows the phylogenetic relationship of nMAT proteins between A thaliana and other nonredundant plant species taken from BLASTP analysis.

SUBMITTER: Malik S 

PROVIDER: S-EPMC5457027 | biostudies-literature | 2017

REPOSITORIES: biostudies-literature

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Phylogenetic Analysis of Nuclear-Encoded RNA Maturases.

Malik Sunita S   Upadhyaya K C KC   Khurana Sm Paul SP  

Evolutionary bioinformatics online 20170529


Posttranscriptional processes, such as splicing, play a crucial role in gene expression and are prevalent not only in nuclear genes but also in plant mitochondria where splicing of group II introns is catalyzed by a class of proteins termed <i>maturases</i>. In plant mitochondria, there are 22 mitochondrial group II introns. matR, nMAT1, nMAT2, nMAT3, and nMAT4 proteins have been shown to be required for efficient splicing of several group II introns in <i>Arabidopsis thaliana</i>. Nuclear matur  ...[more]

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