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DNA-cellulose
used for affinity chromatography of sequence-specific DNA-binding proteins
Also Known As:
DNA cellulose
Networked:
28
relevant articles (
0
outcomes,
1
trials/studies)
Bio-Agent Context: Research Results
Macromolecular Substances: 97
Polymers: 13051
Biopolymers: 773
Glucans: 1624
Cellulose: 1972
DNA-cellulose: 28
Carbohydrates: 22023
Polysaccharides: 15383
Glucans: 1624
Cellulose: 1972
DNA-cellulose: 28
Biomedical and Dental Materials
Polymers: 13051
Biopolymers: 773
Cellulose: 1972
DNA-cellulose: 28
Technology, Industry, and Agriculture
Manufactured Materials
Biomedical and Dental Materials
Polymers: 13051
Biopolymers: 773
Cellulose: 1972
DNA-cellulose: 28
Nucleic Acids, Nucleotides, and Nucleosides: 1
Nucleic Acids: 11752
DNA: 145982
DNA-cellulose: 28
Experts
1.
Chen, Min
: 1 article (07/2006)
2.
Du, Hui
: 1 article (07/2006)
3.
Wang, Hai-Yan
: 1 article (07/2006)
4.
Zhang, Ying
: 1 article (07/2006)
5.
Zhao, Ming-Hui
: 1 article (07/2006)
6.
Stepaniak, Leszek
: 1 article (02/2002)
Related Diseases
1.
Neoplasms (Cancer)
01/01/1990 - "
As few as 55% (11 out of 20) of GR-positive tumors revealed receptors capable of activation and interaction with DNA-cellulose.
"
04/01/1980 - "
After MtT resection, the mammary tumor ER binds to DNA-cellulose, as well as ER from MTW9-D, whereas implantation of MtT into animals bearing MTW9-D decreases ER binding to DNA-cellulose.
"
02/01/1985 - "
By mixing cytosols from this tumor and uterus, we describe a tumor factor capable of increasing ER affinity for DNA, as assayed by DNA-cellulose chromatography and saturation studies.
"
05/01/1983 - "
Finally, the salt concentrations necessary to elute ER from DNA-cellulose columns were 0.20 and 0.28 M for uterine and C3H tumor ER, respectively.
"
06/15/1976 - "
DNA-binding proteins were isolated from Yoshida ascites tumor fluid by chromatography on DNA-cellulose.
"
2.
Breast Neoplasms (Breast Cancer)
09/15/1983 - "
To further test the diversity in ER activation, DNA-cellulose binding of ER from 10 primary breast cancer tissues was determined in the presence or absence of molybdate.
"
06/01/1988 - "
The progesterone receptor (PR) was partially purified from T47D human breast cancer cells by sequential chromatography on phosphocellulose, heparin-Sepharose, and DNA-cellulose.
"
05/25/1987 - "
In this report we examine the DNA-cellulose binding and sedimentation properties of 1,25-dihydroxyvitamin D3 (1,25(OH)2D3) receptors from rat intestine and cultured human mammary cancer cells (MCF-7) extracted in nonactivating (low salt) buffers.
"
3.
Ascites
08/01/1983 - "
DNA-binding proteins from the cytosol and nuclei of Yoshida ascites sarcoma cells were isolated by affinity chromatography on native and denatured DNA-cellulose columns.
"
06/15/1976 - "
DNA-binding proteins were isolated from Yoshida ascites tumor fluid by chromatography on DNA-cellulose.
"
04/19/1977 - "
Polymerase I was solubilized from either rat liver or ascites nucleoli by sonication at high ionic strength and subsequently purified by ion filtration, phosphocellulose, sucrose gradient centrifugation, and DNA-cellulose chromatography.
"
4.
Vaccinia
05/02/1983 - "
Up to seven early poxvirus-specific proteins have been isolated from vaccinia-WR-infected and cowpox-virus-infected chick embryo fibroblasts by affinity chromatography on native DNA-cellulose columns.
"
12/10/1980 - "
The GTP-PPi exchange enzyme co-purifies with vaccinia capping enzyme (RNA guanylyltransferase and RNA (guanine-7-)methyltransferase) through successive chromatography steps on DEAE-cellulose, DNA-cellulose, and phosphocellulose.
"
5.
Sarcoma (Soft Tissue Sarcoma)
08/01/1983 - "
DNA-binding proteins from the cytosol and nuclei of Yoshida ascites sarcoma cells were isolated by affinity chromatography on native and denatured DNA-cellulose columns.
"
12/01/1977 - "
The DNA-binding protein P8 from transformed hamster fibroblasts (line NIL-1-hamster sarcoma virus) has been purified to homogeneity by DNA-cellulose and phosphocellulose chromatography.
"
Related Drugs and Biologics
1.
DNA (Deoxyribonucleic Acid)
2.
phosphocellulose (Calcibind)
3.
Sucrose (Saccharose)
4.
DNA-Binding Proteins (DNA Binding Protein)
5.
Salts
6.
RNA (Ribonucleic Acid)
7.
Immunoglobulin G (IgG)
8.
DEAE-Cellulose
9.
Carrier Proteins (Binding Protein)
10.
Complex Mixtures