This inventor holds 1 USPTO granted patent and 2 published patent applications and 1 EPO patent. Top assignee: Universitetet I Tromsø—norges Arktiske Universitet. Active years: 2022.
Company Filing History:
Years Active: 2022
Title: Ulli Rothweiler: Innovator in DNA Binding Proteins
Introduction
Ulli Rothweiler is a prominent inventor based in Tomasjord, Norway. She has made significant contributions to the field of molecular biology, particularly in the development of single-strand DNA binding proteins. Her innovative work has the potential to advance various applications in genetic research and biotechnology.
Latest Patents
Ulli Rothweiler holds a patent for a single-strand binding protein (SSB). This invention relates to the use of an SSB that exhibits at least 50% of its maximum ssDNA binding capability in the presence of 500 mM of sodium ions. The SSB can dehybridize a DNA molecule or prevent hybridization of a complementary ssDNA. The patent specifies that the SSB comprises the amino acid sequence of SEQ ID NO:1 or an amino acid sequence that is at least 75% identical to SEQ ID NO:1, or a functional fragment thereof. The DNA molecule or ssDNA is present in a solution containing various ions, including sodium, potassium, magnesium, or calcium.
Career Highlights
Ulli Rothweiler is affiliated with the University of Tromsø—The Arctic University of Norway. Her work at this institution has allowed her to explore innovative solutions in the field of DNA research. With a focus on single-strand binding proteins, she has contributed to the understanding of DNA interactions and their implications in various scientific domains.
Collaborations
Ulli collaborates with notable colleagues, including Marcin Pierechod and Nils Peder Willassen. These partnerships enhance her research efforts and contribute to the advancement of knowledge in molecular biology.
Conclusion
Ulli Rothweiler's contributions to the field of DNA binding proteins exemplify her innovative spirit and dedication to scientific advancement. Her patent on single-strand binding proteins showcases her ability to address complex challenges in molecular biology. Through her work, she continues to inspire future innovations in genetic research.