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Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension
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Zeitschriftentitel: | Biochemistry |
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Personen und Körperschaften: | , , , , , , , , , |
In: | Biochemistry, 47, 2008, 40, S. 10827-10827 |
Format: | E-Article |
Sprache: | Englisch |
veröffentlicht: |
American Chemical Society (ACS)
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Schlagwörter: |
author_facet |
Lodderstedt, Grit Sachs, Rolf Faust, Jürgen Bordusa, Frank Kühn, Uwe Golbik, Ralph Kerth, Andreas Wahle, Elmar Balbach, Jochen Schwarz, Elisabeth Lodderstedt, Grit Sachs, Rolf Faust, Jürgen Bordusa, Frank Kühn, Uwe Golbik, Ralph Kerth, Andreas Wahle, Elmar Balbach, Jochen Schwarz, Elisabeth |
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author |
Lodderstedt, Grit Sachs, Rolf Faust, Jürgen Bordusa, Frank Kühn, Uwe Golbik, Ralph Kerth, Andreas Wahle, Elmar Balbach, Jochen Schwarz, Elisabeth |
spellingShingle |
Lodderstedt, Grit Sachs, Rolf Faust, Jürgen Bordusa, Frank Kühn, Uwe Golbik, Ralph Kerth, Andreas Wahle, Elmar Balbach, Jochen Schwarz, Elisabeth Biochemistry Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension Biochemistry |
author_sort |
lodderstedt, grit |
spelling |
Lodderstedt, Grit Sachs, Rolf Faust, Jürgen Bordusa, Frank Kühn, Uwe Golbik, Ralph Kerth, Andreas Wahle, Elmar Balbach, Jochen Schwarz, Elisabeth 0006-2960 1520-4995 American Chemical Society (ACS) Biochemistry http://dx.doi.org/10.1021/bi8016075 Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension Biochemistry |
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10.1021/bi8016075 |
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American Chemical Society (ACS), 2008 |
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American Chemical Society (ACS), 2008 |
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American Chemical Society (ACS) |
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Biochemistry |
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title |
Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension |
title_unstemmed |
Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension |
title_full |
Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension |
title_fullStr |
Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension |
title_full_unstemmed |
Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension |
title_short |
Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension |
title_sort |
hofmeister salts and potential therapeutic compounds accelerate in vitro fibril formation of the n-terminal domain of pabpn1 containing a disease-causing alanine extension |
topic |
Biochemistry |
url |
http://dx.doi.org/10.1021/bi8016075 |
publishDate |
2008 |
physical |
10827-10827 |
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author | Lodderstedt, Grit, Sachs, Rolf, Faust, Jürgen, Bordusa, Frank, Kühn, Uwe, Golbik, Ralph, Kerth, Andreas, Wahle, Elmar, Balbach, Jochen, Schwarz, Elisabeth |
author_facet | Lodderstedt, Grit, Sachs, Rolf, Faust, Jürgen, Bordusa, Frank, Kühn, Uwe, Golbik, Ralph, Kerth, Andreas, Wahle, Elmar, Balbach, Jochen, Schwarz, Elisabeth, Lodderstedt, Grit, Sachs, Rolf, Faust, Jürgen, Bordusa, Frank, Kühn, Uwe, Golbik, Ralph, Kerth, Andreas, Wahle, Elmar, Balbach, Jochen, Schwarz, Elisabeth |
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container_issue | 40 |
container_start_page | 10827 |
container_title | Biochemistry |
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description | |
doi_str_mv | 10.1021/bi8016075 |
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imprint | American Chemical Society (ACS), 2008 |
imprint_str_mv | American Chemical Society (ACS), 2008 |
institution | DE-Zi4, DE-15, DE-105, DE-14, DE-Ch1 |
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physical | 10827-10827 |
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publisher | American Chemical Society (ACS) |
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source_id | 49 |
spelling | Lodderstedt, Grit Sachs, Rolf Faust, Jürgen Bordusa, Frank Kühn, Uwe Golbik, Ralph Kerth, Andreas Wahle, Elmar Balbach, Jochen Schwarz, Elisabeth 0006-2960 1520-4995 American Chemical Society (ACS) Biochemistry http://dx.doi.org/10.1021/bi8016075 Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension Biochemistry |
spellingShingle | Lodderstedt, Grit, Sachs, Rolf, Faust, Jürgen, Bordusa, Frank, Kühn, Uwe, Golbik, Ralph, Kerth, Andreas, Wahle, Elmar, Balbach, Jochen, Schwarz, Elisabeth, Biochemistry, Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension, Biochemistry |
title | Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension |
title_full | Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension |
title_fullStr | Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension |
title_full_unstemmed | Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension |
title_short | Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension |
title_sort | hofmeister salts and potential therapeutic compounds accelerate in vitro fibril formation of the n-terminal domain of pabpn1 containing a disease-causing alanine extension |
title_unstemmed | Hofmeister Salts and Potential Therapeutic Compounds Accelerate in Vitro Fibril Formation of the N-Terminal Domain of PABPN1 Containing a Disease-Causing Alanine Extension |
topic | Biochemistry |
url | http://dx.doi.org/10.1021/bi8016075 |