- Home
- Search Results
- Page 1 of 1
Search for: All records
-
Total Resources3
- Resource Type
-
0001000001010000
- More
- Availability
-
30
- Author / Contributor
- Filter by Author / Creator
-
-
Bonney, Megan E. (1)
-
Bratton, Benjamin P (1)
-
Chung, Yoonjie K. (1)
-
Delarue, Morgan (1)
-
Fairman, Robert (1)
-
Gitai, Zemer (1)
-
Glaubman, Jessica (1)
-
Hofmann, Jennifer (1)
-
Hofmann, Jennifer L (1)
-
Holt, Liam J (1)
-
Kokona, Bashkim (1)
-
Megan Hofmann, Jennifer Mankoff (1)
-
Okeke, Iruka N. (1)
-
Park, Sumin (1)
-
Ramos Falcón, Laura I. (1)
-
Shaevitz, Joshua W (1)
-
Sheehan, Joseph P (1)
-
Sunol, Alp M (1)
-
Thomas, Jessica M. (1)
-
Valverde-Mendez, Diana (1)
-
- Filter by Editor
-
-
null (1)
-
& Spizer, S. M. (0)
-
& . Spizer, S. (0)
-
& Ahn, J. (0)
-
& Bateiha, S. (0)
-
& Bosch, N. (0)
-
& Brennan K. (0)
-
& Brennan, K. (0)
-
& Chen, B. (0)
-
& Chen, Bodong (0)
-
& Drown, S. (0)
-
& Ferretti, F. (0)
-
& Higgins, A. (0)
-
& J. Peters (0)
-
& Kali, Y. (0)
-
& Ruiz-Arias, P.M. (0)
-
& S. Spitzer (0)
-
& Sahin. I. (0)
-
& Spitzer, S. (0)
-
& Spitzer, S.M. (0)
-
-
Have feedback or suggestions for a way to improve these results?
!
Note: When clicking on a Digital Object Identifier (DOI) number, you will be taken to an external site maintained by the publisher.
Some full text articles may not yet be available without a charge during the embargo (administrative interval).
What is a DOI Number?
Some links on this page may take you to non-federal websites. Their policies may differ from this site.
-
ABSTRACT The crowded bacterial cytoplasm is comprised of biomolecules that span several orders of magnitude in size and electrical charge. This complexity has been proposed as the source of the rich spatial organization and apparent anomalous diffusion of intracellular components, although this has not been tested directly. Here, we use biplane microscopy to track the 3D motion of self-assembled bacterial Genetically Encoded Multimeric nanoparticles (bGEMs) with tunable size (20 to 50 nm) and charge (−2160 to +1800 e) in liveEscherichia colicells. To probe intermolecular details at spatial and temporal resolutions beyond experimental limits, we also developed a colloidal whole-cell model that explicitly represents the size and charge of cytoplasmic macromolecules and the porous structure of the bacterial nucleoid. Combining these techniques, we show that bGEMs spatially segregate by size, with small 20-nm particles enriched inside the nucleoid, and larger and/or positively charged particles excluded from this region. Localization is driven by entropic and electrostatic forces arising from cytoplasmic polydispersity, nucleoid structure, geometrical confinement, and interactions with other biomolecules including ribosomes and DNA. We observe that at the timescales of traditional single molecule tracking experiments, motion appears sub-diffusive for all particle sizes and charges. However, using computer simulations with higher temporal resolution, we find that the apparent anomalous exponents are governed by the region of the cell in which bGEMs are located. Molecular motion does not display anomalous diffusion on short time scales and the apparent sub-diffusion arises from geometrical confinement within the nucleoid and by the cell boundary.more » « less
-
Megan Hofmann, Jennifer Mankoff (, ACM)null (Ed.)Automatic knitting machines are robust, digital fabrication devices that enable rapid and reliable production of attractive, functional objects by combining stitches to produce unique physical properties. However, no existing design tools support optimization for desirable physical and aesthetic knitted properties. We present KnitGIST (Generative Instantiation Synthesis Toolkit for knitting), a program synthesis pipeline and library for generating hand- and machine-knitting patterns by intuitively mapping objectives to tactics for texture design. KnitGIST generates a machine-knittable program in a domain-specific programming language.more » « less
-
Thomas, Jessica M.; Kokona, Bashkim; Chung, Yoonjie K.; Hofmann, Jennifer; Ramos Falcón, Laura I.; Park, Sumin; Glaubman, Jessica; Fairman, Robert; Okeke, Iruka N.; Bonney, Megan E. (, Microbiology)
An official website of the United States government
