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Biochemistry
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January 10, 1995
Kinetic studies by fluorescence resonance energy transfer employing a double-labeled oligonucleotide: hybridization to the oligonucleotide complement and to single-stranded DNA
K M Parkhurst, L J Parkhurst
The International Journal of Biochemistry
|
June 1, 1992
Rapid preparation of native alpha and beta chains of human hemoglobin
K M Parkhurst, L J Parkhurst
Biochemistry
|
January 10, 1995
Donor-acceptor distance distributions in a double-labeled fluorescent oligonucleotide both as a single strand and in duplexes
K M Parkhurst, L J Parkhurst
Biochemistry
|
June 11, 1996
Simultaneous binding and bending of promoter DNA by the TATA binding protein: real time kinetic measurements
K M Parkhurst, M Brenowitz, L J Parkhurst
Journal of Molecular Biology
|
June 22, 1999
Intermediate species possessing bent DNA are present along the pathway to formation of a final TBP-TATA complex
K M Parkhurst, R M Richards, M Brenowitz, et al.
The Journal of Biological Chemistry
|
March 30, 2001
DNA sequence-dependent differences in TATA-binding protein-induced DNA bending in solution are highly sensitive to osmolytes
J Wu, K M Parkhurst, R M Powell, et al.
The Journal of Biological Chemistry
|
June 2, 2001
Marked stepwise differences within a common kinetic mechanism characterize TATA-binding protein interactions with two consensus promoters
R M Powell, K M Parkhurst, M Brenowitz, et al.
Bioconjugate Chemistry
|
September 1, 1994
Synthesis and characterization of conjugates formed between periodate-oxidized ribonucleotides and amine-containing fluorophores
R E Hileman, K M Parkhurst, N K Gupta, et al.
Biopolymers
|
May 3, 2002
Time-resolved fluorescence resonance energy transfer studies of DNA bending in double-stranded oligonucleotides and in DNA-protein complexes
L J Parkhurst, K M Parkhurst, R Powell, et al.
The Journal of Biological Chemistry
|
March 30, 2001
DNA bends in TATA-binding protein-TATA complexes in solution are DNA sequence-dependent
J Wu, K M Parkhurst, R M Powell, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 11) with videos related to
Sort By:
Page
of 2
Biochemistry
|
January 10, 1995
Kinetic studies by fluorescence resonance energy transfer employing a double-labeled oligonucleotide: hybridization to the oligonucleotide complement and to single-stranded DNA
K M Parkhurst, L J Parkhurst
The International Journal of Biochemistry
|
June 1, 1992
Rapid preparation of native alpha and beta chains of human hemoglobin
K M Parkhurst, L J Parkhurst
Biochemistry
|
January 10, 1995
Donor-acceptor distance distributions in a double-labeled fluorescent oligonucleotide both as a single strand and in duplexes
K M Parkhurst, L J Parkhurst
Biochemistry
|
June 11, 1996
Simultaneous binding and bending of promoter DNA by the TATA binding protein: real time kinetic measurements
K M Parkhurst, M Brenowitz, L J Parkhurst
Journal of Molecular Biology
|
June 22, 1999
Intermediate species possessing bent DNA are present along the pathway to formation of a final TBP-TATA complex
K M Parkhurst, R M Richards, M Brenowitz, et al.
The Journal of Biological Chemistry
|
March 30, 2001
DNA sequence-dependent differences in TATA-binding protein-induced DNA bending in solution are highly sensitive to osmolytes
J Wu, K M Parkhurst, R M Powell, et al.
The Journal of Biological Chemistry
|
June 2, 2001
Marked stepwise differences within a common kinetic mechanism characterize TATA-binding protein interactions with two consensus promoters
R M Powell, K M Parkhurst, M Brenowitz, et al.
Bioconjugate Chemistry
|
September 1, 1994
Synthesis and characterization of conjugates formed between periodate-oxidized ribonucleotides and amine-containing fluorophores
R E Hileman, K M Parkhurst, N K Gupta, et al.
Biopolymers
|
May 3, 2002
Time-resolved fluorescence resonance energy transfer studies of DNA bending in double-stranded oligonucleotides and in DNA-protein complexes
L J Parkhurst, K M Parkhurst, R Powell, et al.
The Journal of Biological Chemistry
|
March 30, 2001
DNA bends in TATA-binding protein-TATA complexes in solution are DNA sequence-dependent
J Wu, K M Parkhurst, R M Powell, et al.
Page
of 2