油管加速器npv-outline

We do this in the Department of Biochemistry and Molecular Biophysics at Washington University School of Medicine using a combination of physics-based simulations, computational biology, and experimental approaches.

TL/DR: A large fraction of proteins and protein-regions are classified as ‘intrinsically disordered’. These regions have historically been hard to study, but play key roles in wide variety of cellular function. Furthermore, these regions are strongly implicated in many diseases. In the Holehouse lab, we integrate a range of computational approaches (simulations, bioinformatics, systems biology) with experimental data to uncover how intrinsically disordered regions mediate cellular function, with a particular interest in biological phase separation.

chalk_talk_figure_v2-01.jpg

油管加速器npv-outline

We often think of proteins as tiny well-defined machines that mediate biological function in a way that is inherently linked to their 3D structure. However, a large fraction of protein regions are referred to as ‘intrinsically disordered’ - regions that don’t fold into a well-defined 3D shape, but instead exist in an ensemble of conformations.

These intrinsically disordered regions (IDRs) play key roles in a wide variety of cellular functions, including gene expression, signal transduction, and the stress response. They are also frequently mutated in diseases, from neurodegenerative conditions to cancer. Despite their cellular importance and clinical significance, we lack effective generalizable ways to predict and understand function from sequence.

Our lab is focussed on combining bioinformatics with statistical physics and quantitative cell biology to uncover the general principles that underlie how function is encoded into disordered proteins. We do this by performing simulations and/or sequence-based analysis, and then testing predictions that come from these computational approaches experimentally. Of particular interest is how IDRs can act in a regulatory capacity, how and why IDRs evolve, and how intracellular phase transitions contribute to cellular fitness and function

油管加速器npv-outline

A major goal of our group is to create an environment that is safe and supportive for lab members from all communities and backgrounds. Diversity in experience, perspective, and culture is a major asset, and one that can only be realized through an inclusive environment that promotes and supports the success of scientists from groups that are traditionally underrepresented in science, technology, engineering and mathematics (STEM). This support extends beyond our physical lab space to all members of the broader scientific community, and trainees from groups underrepresented in STEM should feel welcome to contact Alex or another member of the lab for support and advice.

turbo加速器mac下载,turbo加速器npv,turbo加速器vp,turbo加速器vqn  1nstagram加速器,哪个加速器可以上instagram,lnstagram官方免费下载加速器,instagram的免费加速软件  kuli云官网,kuli云下载地址,kuli云跑路了,kuli云打不开  星链云最新版,星链云官方网址,星链云ios下载,星链云不能用了  火星加速器最新版,火星加速器pc版下载,火星加速器2024年,火星加速器vn  iwara加速器vqn,iwara加速器用不了了,iwara加速器跑路了,iwara加速器不能用了  小蓝鸟怎么注册安全,小蓝鸟twitter怎么注册,小蓝鸟怎么注册号码怎么写,小蓝鸟怎么注册不了