AbstractElectrostatic forces play a key role in mediating interactions between proteins. However, gaining quantitative insights into the complex effects of electrostatics on protein behavior has proved challenging, due to the wide palette of scenarios through which both cations and anions can interact with polypeptide molecules in a specific manner or can result in screening in solution. In this article, we have used a variety of biophysical methods to probe the steady-state kinetics of fibrillar protein self-assembly in a highly quantitative manner to detect how it is modulated by changes in solution ionic strength. Due to the exponential modulation of the reaction rate by electrostatic forces, this reaction represents an exquisitely sensi...
A better understanding of protein aggregation is bound to translate intocritical advances in several...
The actin cytoskeleton is a central mediator of cellular morphogenesis, and rapid actin reorganizati...
Doctor of PhilosophyDepartment of PhysicsJeremy D. SchmitDiseases such as Alzheimer’s, Parkinson’s, ...
Electrostatic forces play a key role in mediating interactions between proteins. However, gaining qu...
Understanding how protein–protein interactions depend on the choice of buffer, salt, ionic strength,...
In this work we quantified the role of electrostatic interactions in the self-assembly of a model am...
Master of ScienceDepartment of PhysicsJeremy SchmitOver twenty percent of amino acids are ionized un...
The aggregation of the amyloid β peptide (Aβ42), which is linked to Alzheimer's disease, can be alte...
AbstractThe self-assembly of proteins and peptides into polymeric amyloid fibrils is a process that ...
The actin cytoskeleton is a central mediator of cellular morphogenesis, and rapid actin reorganizati...
The actin cytoskeleton is a central mediator of cellular morphogenesis, and rapid actin reorganizati...
Salts and proteins comprise two of the basic molecular components of biological materials. Kosmotrop...
The actin cytoskeleton is a central mediator of cellular morphogenesis, and rapid actin reorganizati...
The role of electrostatics in protein–protein interactions and binding is reviewed in this paper. A ...
AbstractProtein self-association may be detrimental in biological systems, but can be utilized in a ...
A better understanding of protein aggregation is bound to translate intocritical advances in several...
The actin cytoskeleton is a central mediator of cellular morphogenesis, and rapid actin reorganizati...
Doctor of PhilosophyDepartment of PhysicsJeremy D. SchmitDiseases such as Alzheimer’s, Parkinson’s, ...
Electrostatic forces play a key role in mediating interactions between proteins. However, gaining qu...
Understanding how protein–protein interactions depend on the choice of buffer, salt, ionic strength,...
In this work we quantified the role of electrostatic interactions in the self-assembly of a model am...
Master of ScienceDepartment of PhysicsJeremy SchmitOver twenty percent of amino acids are ionized un...
The aggregation of the amyloid β peptide (Aβ42), which is linked to Alzheimer's disease, can be alte...
AbstractThe self-assembly of proteins and peptides into polymeric amyloid fibrils is a process that ...
The actin cytoskeleton is a central mediator of cellular morphogenesis, and rapid actin reorganizati...
The actin cytoskeleton is a central mediator of cellular morphogenesis, and rapid actin reorganizati...
Salts and proteins comprise two of the basic molecular components of biological materials. Kosmotrop...
The actin cytoskeleton is a central mediator of cellular morphogenesis, and rapid actin reorganizati...
The role of electrostatics in protein–protein interactions and binding is reviewed in this paper. A ...
AbstractProtein self-association may be detrimental in biological systems, but can be utilized in a ...
A better understanding of protein aggregation is bound to translate intocritical advances in several...
The actin cytoskeleton is a central mediator of cellular morphogenesis, and rapid actin reorganizati...
Doctor of PhilosophyDepartment of PhysicsJeremy D. SchmitDiseases such as Alzheimer’s, Parkinson’s, ...