Sort by
Refine Your Search
-
Listed
-
Category
-
Program
-
Field
-
that has spawned many fundamental discoveries in biology and medicine as well as several Nobel Laureates. Become part of our community! The Keller Valsecchi group explores the epigenetic mechanisms and
-
, muscular dystrophies, neurodegenerative diseases, and cancer. Despite its importance, the molecular mechanisms by which PGC-1α-a large, predominantly disordered protein with only a single structured RRM
-
element of leadership and development, and the University systematically strengthens these capabilities to drive strategic change and achieve sustainable impact. In this role, you will further develop
-
ecological and evolutionary success has made them dominant and diverse, yet the mechanisms behind this success remain poorly understood. This project seeks to address this question by examining the role
-
cellular proteins. Hsp90's malfunction is implicated in cancer, neurodegenerative, and metabolic diseases. Despite its importance, the precise molecular mechanisms by which Hsp90 recognizes, processes, and
-
balance and climate that other microalgae maintained for nearly a billion years. Their ecological and evolutionary success has made them dominant and diverse, yet the mechanisms behind this success remain
-
of the project is to understand the role of the second messenger c-di-GMP in E. coli bacteriophage infection and propagation and to investigate mechanisms that allow the host to escape phage killing by modulating
-
all cellular proteins. Hsp90's malfunction is implicated in cancer, neurodegenerative, and metabolic diseases. Despite its importance, the precise molecular mechanisms by which Hsp90 recognizes
-
importance, the precise molecular mechanisms by which Hsp90 recognizes, processes, and releases its client proteins remain elusive due to the complex and dynamic nature of these processes. This doctoral
-
, interactions, catalytic mechanisms etc. in real-time. Building on our published and unpublished work, the successful candidate will advance nanopore trapping in new directions using solid-state and biological