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TEFM gene

Known as: TEFM, C17ORF42, TRANSCRIPTION ELONGATION FACTOR, MITOCHONDRIAL 
 
National Institutes of Health

Papers overview

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2019
2019
Regulation of replication and expression of mitochondrial DNA (mtDNA) is essential for cellular energy conversion via oxidative… Expand
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2019
2019
Background17q11.2 microdeletions, which include the neurofibromatosis type 1 (NF1) gene region, are responsible for the NF1… Expand
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2018
2018
Regulation of transcription elongation is one of the key mechanisms employed to control gene expression. The single-subunit… Expand
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2017
2017
In human mitochondria, transcription termination events at a G-quadruplex region near the replication origin are thought to drive… Expand
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2017
2017
Single-subunit RNA polymerases (RNAPs) are present in phage T7 and in mitochondria of all eukaryotes. This RNAP class plays… Expand
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2016
2016
During replication of nuclear ribosomal DNA (rDNA), clashes with the transcription apparatus can cause replication fork collapse… Expand
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Review
2016
Review
2016
The guanine (G)-tract of conserved sequence block 2 (CSB 2) in human mitochondrial DNA can result in transcription termination… Expand
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Highly Cited
2015
Highly Cited
2015
Switching transcription and replication Because mitochondrial DNA is circular, the transcription and replication machinery might… Expand
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Highly Cited
2015
Highly Cited
2015
A single-subunit RNA polymerase, POLRMT, transcribes the mitochondrial genome in human cells. Recently, a factor termed as the… Expand
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Highly Cited
2011
Highly Cited
2011
Here we show that c17orf42, hereafter TEFM (transcription elongation factor of mitochondria), makes a critical contribution to… Expand
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