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Author
- Bhattaram, Dhruv2
- Kaur, Parminder2
- Liu, Ming2
- Pan, Hai2
- Piehler, Jacob2
- Riehn, Robert2
- Wang, Hong2
- Barnes, Ryan1
- Detwiler, Ariana C1
- Gu, Xinyun1
- Hao, Pengyu1
- Irvin, Elizabeth Marie1
- Leighton, Gage O1
- Lu, Warren1
- Mahn, Chelsea1
- Opresko, Patricia L1
- Sanford, Samantha Lynn1
- Tang, Qingyu1
- Weninger, Keith1
- Williams, David C Jr1
- Xu, Guozhou1
- Xu, Pengning1
Keyword
- AFM2
- atomic force microscopy2
- atomic force microscopy (AFM)2
- single-molecule biophysics2
- alt-NHEJ1
- alternative nonhomologous end-joining1
- base pairs1
- bps1
- CpG1
- cytosine-guanosine dinucleotide1
- DDR1
- DNA binding protein1
- DNA damage response1
- DNA methylation1
- DNA-binding protein1
- EMSA1
- IDR1
- MBD1
- MSD1
- NHEJ1
- NuRD1
- QD1
- SAv-QD1
- SEC1
- TIRFM1
Molecular Biophysics
2 Results
- Research ArticleOpen Access
Densely methylated DNA traps Methyl-CpG–binding domain protein 2 but permits free diffusion by Methyl-CpG–binding domain protein 3
Journal of Biological ChemistryVol. 298Issue 10102428Published online: August 26, 2022- Gage O. Leighton
- Elizabeth Marie Irvin
- Parminder Kaur
- Ming Liu
- Changjiang You
- Dhruv Bhattaram
- and others
Cited in Scopus: 0The methyl-CpG–binding domain 2 and 3 proteins (MBD2 and MBD3) provide structural and DNA-binding function for the Nucleosome Remodeling and Deacetylase (NuRD) complex. The two proteins form distinct NuRD complexes and show different binding affinity and selectivity for methylated DNA. Previous studies have shown that MBD2 binds with high affinity and selectivity for a single methylated CpG dinucleotide while MBD3 does not. However, the NuRD complex functions in regions of the genome that contain many CpG dinucleotides (CpG islands). - Research ArticleOpen Access
Structure, dynamics, and regulation of TRF1-TIN2-mediated trans- and cis-interactions on telomeric DNA
Journal of Biological ChemistryVol. 297Issue 3101080Published online: August 13, 2021- Hai Pan
- Parminder Kaur
- Ryan Barnes
- Ariana C. Detwiler
- Samantha Lynn Sanford
- Ming Liu
- and others
Cited in Scopus: 2TIN2 is a core component of the shelterin complex linking double-stranded telomeric DNA-binding proteins (TRF1 and TRF2) and single-strand overhang-binding proteins (TPP1-POT1). In vivo, the large majority of TRF1 and TRF2 exist in complexes containing TIN2 but lacking TPP1/POT1; however, the role of TRF1-TIN2 interactions in mediating interactions with telomeric DNA is unclear. Here, we investigated DNA molecular structures promoted by TRF1-TIN2 interaction using atomic force microscopy (AFM), total internal reflection fluorescence microscopy (TIRFM), and the DNA tightrope assay.