Parminder Kaur, Ph.D.

Affiliations: 
2012 Physics Arizona State University, Tempe, AZ, United States 
Area:
General Biophysics, Oncology
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"Parminder Kaur"

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Stuart Lindsay grad student 2012 Arizona State (Physics Tree)
 (AFM Study of Gene Silencing by DNA Methylation and Its Interactions Involving Chromatin and Methyl CpG Binding Proteins.)
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Publications

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Kaur P, Lu X, Xu Q, et al. (2023) High-speed AFM imaging reveals DNA capture and loop extrusion dynamics by cohesin-NIPBL. The Journal of Biological Chemistry. 105296
Wojtaszek JL, Hoff KE, Longley MJ, et al. (2023) Structure-specific roles for PolG2-DNA complexes in maintenance and replication of mitochondrial DNA. Nucleic Acids Research
Liu M, Pan H, Kaur P, et al. (2023) Assembly Path Dependence of Telomeric DNA Compaction by TRF1, TIN2, and SA1. Biophysical Journal
Leighton GO, Irvin EM, Kaur P, et al. (2022) Densely methylated DNA traps Methyl-CpG Binding Domain protein 2 but permits free diffusion by Methyl-CpG Binding Domain protein 3. The Journal of Biological Chemistry. 102428
Kaur P, Barnes R, Pan H, et al. (2021) TIN2 is an architectural protein that facilitates TRF2-mediated trans- and cis-interactions on telomeric DNA. Nucleic Acids Research
Kaur P, Pan H, Longley MJ, et al. (2021) Using Atomic Force Microscopy to Study the Real Time Dynamics of DNA Unwinding by Mitochondrial Twinkle Helicase. Bio-Protocol. 11: e4139
Pan H, Kaur P, Barnes R, et al. (2021) Structure, dynamics, and regulation of TRF1-TIN2-mediated trans- and cis-interactions on telomeric DNA. The Journal of Biological Chemistry. 101080
Pan H, Jin M, Ghadiyaram A, et al. (2020) Cohesin SA1 and SA2 are RNA binding proteins that localize to RNA containing regions on DNA. Nucleic Acids Research
Kaur P, Longley MJ, Pan H, et al. (2020) Single-molecule level structural dynamics of DNA unwinding by human mitochondrial Twinkle helicase. The Journal of Biological Chemistry
Liu M, Movahed S, Dangi S, et al. (2020) DNA looping by two 5-methylcytosine-binding proteins quantified using nanofluidic devices. Epigenetics & Chromatin. 13: 18
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