A competitive formation of DNA: RNA hybrid G-quadruplex is responsible to the mitochondrial transcription termination at the DNA replication priming site

K Zheng, R Wu, Y He, S Xiao, J Zhang… - Nucleic acids …, 2014 - academic.oup.com
Human mitochondrial DNA contains a distinctive guanine-rich motif denoted conserved
sequence block II (CSB II) that stops RNA transcription, producing prematurely terminated …

[PDF][PDF] A competitive formation of DNA: RNA hybrid G-quadruplex is responsible to the mitochondrial transcription termination at the DNA replication priming site

K Zheng, R Wu, SX Yi-de He, J Zhang, J Liu… - Nucleic Acids …, 2014 - Citeseer
Human mitochondrial DNA contains a distinctive guanine-rich motif denoted conserved
sequence block II (CSB II) that stops RNA transcription, producing prematurely terminated …

[HTML][HTML] A competitive formation of DNA: RNA hybrid G-quadruplex is responsible to the mitochondrial transcription termination at the DNA replication priming site

K Zheng, R Wu, S Xiao, J Zhang, J Liu… - Nucleic Acids …, 2014 - ncbi.nlm.nih.gov
Human mitochondrial DNA contains a distinctive guanine-rich motif denoted conserved
sequence block II (CSB II) that stops RNA transcription, producing prematurely terminated …

A competitive formation of DNA: RNA hybrid G-quadruplex is responsible to the mitochondrial transcription termination at the DNA replication priming site

K Zheng, R Wu, S Xiao, J Zhang, J Liu… - Nucleic acids …, 2014 - pubmed.ncbi.nlm.nih.gov
Human mitochondrial DNA contains a distinctive guanine-rich motif denoted conserved
sequence block II (CSB II) that stops RNA transcription, producing prematurely terminated …

A competitive formation of DNA: RNA hybrid G-quadruplex is responsible to the mitochondrial transcription termination at the DNA replication priming site

K Zheng, R Wu, Y He, S Xiao, J Zhang… - Nucleic Acids …, 2014 - academic.oup.com
competitive formation of DNA:RNA hybrid G-quadruplex is responsible to the mitochondrial
transcription termination at the DNA replication priming site | Nucleic Acids Research | Oxford …

A competitive formation of DNA: RNA hybrid G-quadruplex is responsible to the mitochondrial transcription termination at the DNA replication priming site.

KW Zheng, RY Wu, YD He, S Xiao, JY Zhang… - Nucleic Acids …, 2014 - europepmc.org
Human mitochondrial DNA contains a distinctive guanine-rich motif denoted conserved
sequence block II (CSB II) that stops RNA transcription, producing prematurely terminated …

[引用][C] A competitive formation of DNA: RNA hybrid G-quadruplex is responsible to the mitochondrial transcription termination at the DNA replication priming site

K Zheng, R Wu, SX Yi-de He, J Zhang, J Liu… - Nucleic Acids …, 2014 - cir.nii.ac.jp
A competitive formation of DNA:RNA hybrid G-quadruplex is responsible to the mitochondrial
transcription termination at the DNA replication priming site | CiNii Research CiNii 国立情報学 …

[PDF][PDF] A competitive formation of DNA: RNA hybrid G-quadruplex is responsible to the mitochondrial transcription termination at the DNA replication priming site

K Zheng, R Wu, SX Yi-de He, J Zhang… - Nucleic Acids …, 2014 - pdfs.semanticscholar.org
Human mitochondrial DNA contains a distinctive guanine-rich motif denoted conserved
sequence block II (CSB II) that stops RNA transcription, producing prematurely terminated …

A competitive formation of DNA: RNA hybrid G-quadruplex is responsible to the mitochondrial transcription termination at the DNA replication priming site

K Zheng, R Wu, SX Yi-de He, J Zhang… - Nucleic Acids …, 2014 - pdfs.semanticscholar.org
A competitive formation of DNA:RNA hybrid G-quadruplex is responsible to the
mitochondrial transcription termination at the DNA Page 1 12960 Nucleic Acids Research …

A competitive formation of DNA: RNA hybrid G-quadruplex is responsible to the mitochondrial transcription termination at the DNA replication priming site

K Zheng, R Wu, S Xiao, J Zhang, J Liu… - Nucleic Acids …, 2014 - ncbi.nlm.nih.gov
A competitive formation of DNA:RNA hybrid G-quadruplex is responsible to the mitochondrial
transcription termination at the DNA replication priming site - PMC Back to Top Skip to main …