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
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
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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/bi701322g
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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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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/bi701322g 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/bi701322g