Back to Results
First PageMeta Content
T cell / Phosphatidylinositol (3 / 4 / 5)-trisphosphate / AKT / Feedback / Cell membrane / Network motif / Phosphorylation / Topology / Biology / Cell biology / Cell signaling


Chau Walter et al Figure2
Add to Reading List

Document Date: 2014-12-24 04:41:59


Open Document

File Size: 1,75 MB

Share Result on Facebook

Company

Synthetic PIP3 Polarization Networks / Elsevier Inc. / /

Country

United States / /

Currency

pence / /

/

Facility

Therapeutic Sciences University of California / Peking University / Hughes Medical Institute / Building New Regulatory Interactions Using / Par complex / /

IndustryTerm

stochastic simulation algorithm / natural networks / molecular self-organizing systems / theoretical solution / polarization networks / possible simple networks / possible simple molecular regulatory networks / spatial self-organizing systems / artificial polarization networks / indirect positive feedback networks / combinatorial networks / driven interaction networks / nonbiological molecular systems / natural cell polarization systems / bud site / stochastic algorithm / polarization systems / regulatory networks / possible solutions / cell polarization systems / molecular systems / /

Organization

Center for Life Sciences / University of California / San Francisco / San Francisco / Department of Cellular / Self-Organizing Cell Polarization Angela H. Chau / 1 / 2 / 6 Jessica M. Walter / 1 / 6 Jaline Gerardin / 1 / 3 Chao Tang / 4 / 5 / * and Wendell A. Lim1 / 4 / * 1Howard Hughes Medical Institute / Peking University / Beijing / /

Person

Angela H. Chau / /

Position

candidate network topologies / PIP3 reporter / Fisher / representative / reporter for PIP3 / reporter / Marshall / PI3K PH PH PIP3 PIP2 PIP2 Cdc42 PIP3 reporter / /

Product

Demonstrating Their Increased Robustness FREQUENCY / /

ProvinceOrState

California / /

Technology

stochastic simulation algorithm / gene expression / polymerization / simulation / cmp / /

URL

http /

SocialTag