scx cation exchange column Search Results


90
METTLER TOLEDO puregel scx (strong cation-exchange) column
Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the <t>PureGel</t> <t>SCX</t> column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.
Puregel Scx (Strong Cation Exchange) Column, supplied by METTLER TOLEDO, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scx+cation+exchange+column/puregel+scx++strong+cation+exchange++column/pmc00111697-202-26-31
Average 90 stars, based on 1 article reviews
puregel scx (strong cation-exchange) column - by Bioz Stars, 2026-09
90/100 stars
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90
PolyLC INC 5-cm-long strong cation exchange (scx) column packed with 5-μm polysulfoethyl
Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the <t>PureGel</t> <t>SCX</t> column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.
5 Cm Long Strong Cation Exchange (Scx) Column Packed With 5 μm Polysulfoethyl, supplied by PolyLC INC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scx+cation+exchange+column/5+cm+long+strong+cation+exchange++scx++column+packed+with+5+%CE%BCm+polysulfoethyl/pmc02953917-88-10-11
Average 90 stars, based on 1 article reviews
5-cm-long strong cation exchange (scx) column packed with 5-μm polysulfoethyl - by Bioz Stars, 2026-09
90/100 stars
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90
PolyLC INC 9.4 by particle polysulfoethyl a strong cation exchange (scx) column
Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the <t>PureGel</t> <t>SCX</t> column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.
9.4 By Particle Polysulfoethyl A Strong Cation Exchange (Scx) Column, supplied by PolyLC INC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scx+cation+exchange+column/9+4+by+particle+polysulfoethyl+a+strong+cation+exchange++scx++column/pmc08699897-50-12-20
Average 90 stars, based on 1 article reviews
9.4 by particle polysulfoethyl a strong cation exchange (scx) column - by Bioz Stars, 2026-09
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90
Micro-Tech Corporation strong cation exchange (scx) column
Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the <t>PureGel</t> <t>SCX</t> column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.
Strong Cation Exchange (Scx) Column, supplied by Micro-Tech Corporation, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scx+cation+exchange+column/strong+cation+exchange++scx++column/pm15686472-105-40-53
Average 90 stars, based on 1 article reviews
strong cation exchange (scx) column - by Bioz Stars, 2026-09
90/100 stars
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90
PolyLC INC strong cation exchange column polylc-scx 0.3 i.d
Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the <t>PureGel</t> <t>SCX</t> column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.
Strong Cation Exchange Column Polylc Scx 0.3 I.D, supplied by PolyLC INC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scx+cation+exchange+column/strong+cation+exchange+column+polylc+scx+0+3+i+d/pmc08472724-139-10-14
Average 90 stars, based on 1 article reviews
strong cation exchange column polylc-scx 0.3 i.d - by Bioz Stars, 2026-09
90/100 stars
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90
Protea Bio ion exchange columns scx spintips
Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the <t>PureGel</t> <t>SCX</t> column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.
Ion Exchange Columns Scx Spintips, supplied by Protea Bio, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scx+cation+exchange+column/facet+biocompatible+strong+cation+exchange++scx++trapping+columns/pmc06404564-157-7-12
Average 90 stars, based on 1 article reviews
ion exchange columns scx spintips - by Bioz Stars, 2026-09
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90
Vivascience Inc strong cation exchange (scx) spin column
Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the <t>PureGel</t> <t>SCX</t> column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.
Strong Cation Exchange (Scx) Spin Column, supplied by Vivascience Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scx+cation+exchange+column/strong+cation+exchange++scx++spin+column/pmc02374888-115-17-23
Average 90 stars, based on 1 article reviews
strong cation exchange (scx) spin column - by Bioz Stars, 2026-09
90/100 stars
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90
ES Industries epic-scx strong cation exchange (scx) column #122191- escx
Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the <t>PureGel</t> <t>SCX</t> column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.
Epic Scx Strong Cation Exchange (Scx) Column #122191 Escx, supplied by ES Industries, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scx+cation+exchange+column/epic+scx+strong+cation+exchange++scx++column++100+mm+x+2+1+mm++3+%C2%B5m+particles+++122191++escx+/pm28850221-105-14-20
Average 90 stars, based on 1 article reviews
epic-scx strong cation exchange (scx) column #122191- escx - by Bioz Stars, 2026-09
90/100 stars
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90
BIOTAGE scx, 1 g/6
Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the <t>PureGel</t> <t>SCX</t> column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.
Scx, 1 G/6, supplied by BIOTAGE, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scx+cation+exchange+column/strong+cation+exchange+cartridge+scx++1+g+6+spe+columns/us09901571-368-6-17
Average 90 stars, based on 1 article reviews
scx, 1 g/6 - by Bioz Stars, 2026-09
90/100 stars
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90
Merck KGaA restricted access sulphonic acid strong cation-exchanger (ram -scx) column
Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the <t>PureGel</t> <t>SCX</t> column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.
Restricted Access Sulphonic Acid Strong Cation Exchanger (Ram Scx) Column, supplied by Merck KGaA, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scx+cation+exchange+column/restricted+access+sulphonic+acid+strong+cation+exchanger++ram++scx++column/pmc02678124-178-5-13
Average 90 stars, based on 1 article reviews
restricted access sulphonic acid strong cation-exchanger (ram -scx) column - by Bioz Stars, 2026-09
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90
METTLER TOLEDO hydropore scx 4.6 × 100mm analytical cation exchange hplc column
Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the <t>PureGel</t> <t>SCX</t> column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.
Hydropore Scx 4.6 × 100mm Analytical Cation Exchange Hplc Column, supplied by METTLER TOLEDO, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/scx+cation+exchange+column/hydropore+scx+4+6+%C3%97+100mm+analytical+cation+exchange+hplc+column/pmc02515934-35-16-21
Average 90 stars, based on 1 article reviews
hydropore scx 4.6 × 100mm analytical cation exchange hplc column - by Bioz Stars, 2026-09
90/100 stars
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90
PolyLC INC 9.4- by 200-mm 5-μm-particle polysulfoethyl a strong cation exchange (scx) column
Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the <t>PureGel</t> <t>SCX</t> column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.
9.4 By 200 Mm 5 μm Particle Polysulfoethyl A Strong Cation Exchange (Scx) Column, supplied by PolyLC INC, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Average 90 stars, based on 1 article reviews
9.4- by 200-mm 5-μm-particle polysulfoethyl a strong cation exchange (scx) column - by Bioz Stars, 2026-09
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Image Search Results


Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the PureGel SCX column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.

Journal:

Article Title: Identification of Poly(ADP-Ribose) Polymerase as a Transcriptional Coactivator of the Human T-Cell Leukemia Virus Type 1 Tax Protein

doi:

Figure Lengend Snippet: Purification scheme of coactivators and TFIID. Starting material for the nuclear extract material was between 60 and 120 liters of cultured cells. Arrows indicate subsequent columns used for purification. Columns shown with horizontal bars were developed with step elutions in buffer with the salt concentrations indicated. Columns shown with slanted bars represent linear gradients with initial and final salt concentrations indicated at the left and right. Semipurified TFIID is the DE-52 0.25 M KCl peak. Purified TFIID eluted from the PureGel SCX column at approximately 150 mM KCl. The coactivator present in the DE-52 0.1 M KCl flowthrough was purified by two separate methods. Purification over a PureGel SCX column yielded the mixed coactivator peak. Purification by gel filtration yielded three activities, LTF1, LTF2, and STF.

Article Snippet: The complementary activity flowed through this column, was diluted with HE 0 to reduce the final KCl concentration to 50 mM, and was applied to a PureGel SCX (strong cation-exchange) column (Rainin).

Techniques: Purification, Cell Culture, Filtration

Purification of LTF2. (A) The various stages of purification of LTF2 were analyzed by SDS-PAGE and visualized by silver staining. The following fractions that contained the peak of LTF2 activity are in the lanes as indicated: 0.3 to 0.5 M KCl step of the phosphocellulose column; 0.1 M KCl flowthrough of the DE-52 column; fractions corresponding to molecular weights of approximately 80 to 130 kDa of the Superdex 200 column; 0.7 to 0.8 M ammonium sulfate fraction of a linear gradient on the phenyl-Superose column; 0.25 to 0.3 M KPO4 of a linear gradient on the hydroxyapatite column; and the 150 to 180 mM KCl fractions of a linear gradient on an analytical 4.6-mm by 10-cm PureGel SCX column. Molecular masses are indicated (in kilodaltons) on the left. (B) Highly purified PARP from the PureGel SCX column peak shown in panel A were substituted for LTF2 in transcription reactions using conditions similar to those in Fig. ​Fig.5.5. STF, PARP, and LTF1 were added as indicated. The arrow indicates the full-length transcript. (C) Transcripts were quantitated as in Fig. ​Fig.44.

Journal:

Article Title: Identification of Poly(ADP-Ribose) Polymerase as a Transcriptional Coactivator of the Human T-Cell Leukemia Virus Type 1 Tax Protein

doi:

Figure Lengend Snippet: Purification of LTF2. (A) The various stages of purification of LTF2 were analyzed by SDS-PAGE and visualized by silver staining. The following fractions that contained the peak of LTF2 activity are in the lanes as indicated: 0.3 to 0.5 M KCl step of the phosphocellulose column; 0.1 M KCl flowthrough of the DE-52 column; fractions corresponding to molecular weights of approximately 80 to 130 kDa of the Superdex 200 column; 0.7 to 0.8 M ammonium sulfate fraction of a linear gradient on the phenyl-Superose column; 0.25 to 0.3 M KPO4 of a linear gradient on the hydroxyapatite column; and the 150 to 180 mM KCl fractions of a linear gradient on an analytical 4.6-mm by 10-cm PureGel SCX column. Molecular masses are indicated (in kilodaltons) on the left. (B) Highly purified PARP from the PureGel SCX column peak shown in panel A were substituted for LTF2 in transcription reactions using conditions similar to those in Fig. ​Fig.5.5. STF, PARP, and LTF1 were added as indicated. The arrow indicates the full-length transcript. (C) Transcripts were quantitated as in Fig. ​Fig.44.

Article Snippet: The complementary activity flowed through this column, was diluted with HE 0 to reduce the final KCl concentration to 50 mM, and was applied to a PureGel SCX (strong cation-exchange) column (Rainin).

Techniques: Purification, SDS Page, Silver Staining, Activity Assay