نتایج جستجو برای: تست dna unwinding

تعداد نتایج: 524161  

Journal: :Structure 2015
Yupeng Qiu Hengyao Niu Lela Vukovic Patrick Sung Sua Myong

Trinucleotide repeat (TNR) expansion is the root cause for many known congenital neurological and muscular disorders in human including Huntington's disease, fragile X syndrome, and Friedreich's ataxia. The stable secondary hairpin structures formed by TNR may trigger fork stalling during replication, causing DNA polymerase slippage and TNR expansion. Srs2 and Sgs1 are two helicases in yeast th...

Journal: :Physical review letters 2017
Wenxia Lin Jianbing Ma Daguan Nong Chunhua Xu Bo Zhang Jinghua Li Qi Jia Shuoxing Dou Fangfu Ye Xuguang Xi Ying Lu Ming Li

Single-molecule Förster resonance energy transfer is widely applied to study helicases by detecting distance changes between a pair of dyes anchored to overhangs of a forked DNA. However, it has been lacking single-base pair (1-bp) resolution required for revealing stepping kinetics of helicases. We designed a nanotensioner in which a short DNA is bent to exert force on the overhangs, just as i...

2014
Breeana G. Anderson James T. Stivers

Type IB topoisomerases unwind positive and negative DNA supercoils and play a key role in removing supercoils that would otherwise accumulate at replication and transcription forks. An interesting question is whether topoisomerase activity is regulated by the topological state of the DNA, thereby providing a mechanism for targeting the enzyme to highly supercoiled DNA domains in genomes. The ty...

Journal: :The Journal of biological chemistry 2007
Ilker Donmez Vaishnavi Rajagopal Yong-Joo Jeong Smita S Patel

Helicases are motor enzymes that convert the chemical energy of NTP hydrolysis into mechanical force for motion and nucleic acid strand separation. Within the cell, helicases process a range of nucleic acid sequences. It is not known whether this composite rate of moving and opening the strands of nucleic acids depends on the base sequence. Our presteady state kinetic studies of helicases from ...

2009
Budiman Minasny

BACKGROUND Fascial or myofascial unwinding is a process in which a client undergoes a spontaneous reaction in response to the therapist's touch. It can be induced by using specific techniques that encourage a client's body to move into areas of ease. Unwinding is a popular technique in massage therapy, but its mechanism is not well understood. In the absence of a scientific explanation or hypot...

Journal: :The Journal of biological chemistry 1974
K Geider A Kornberg

Earlier studies showed that the Ml3 single-stranded circle is converted to duplex replicative forms (RF) in vivo and in uifro by a rifampicin-sensitive system that fails to act on +X174 DNA. In the absence of DNA polymerase I, the synthetic complementary strand produced by a crude cell extract contained a small gap at a unique position relative to the viral template strand. In these studies we ...

Journal: :Journal of Experimental Botany 2003

Journal: :Nucleic acids research 2001
A J Tackett L Wei C E Cameron K D Raney

Hepatitis C virus (HCV) helicase, non-structural protein 3 (NS3), is proposed to aid in HCV genome replication and is considered a target for inhibition of HCV. In order to investigate the substrate requirements for nucleic acid unwinding by NS3, substrates were prepared by annealing a 30mer oligonucleotide to a 15mer. The resulting 15 bp duplex contained a single-stranded DNA overhang of 15 nt...

2012
Seetha V. Balasingham Ephrem Debebe Zegeye Håvard Homberset Marie L. Rossi Jon K. Laerdahl Vilhelm A. Bohr Tone Tønjum

XPB, also known as ERCC3 and RAD25, is a 3' → 5' DNA repair helicase belonging to the superfamily 2 of helicases. XPB is an essential core subunit of the eukaryotic basal transcription factor complex TFIIH. It has two well-established functions: in the context of damaged DNA, XPB facilitates nucleotide excision repair by unwinding double stranded DNA (dsDNA) surrounding a DNA lesion; while in t...

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