We seek to elucidate the role of macromolecular crowding in transcription and translation. It is well known that stochasticity in gene expression can lead to differential gene expression and heterogeneity in a cell population. Recent experimental observations by Tan et al. have improved our understanding of the functional role of macromolecular crowding. It can be inferred from their observations that macromolecular crowding can lead to robustness in gene expression, resulting in a more homogeneous cell population. We introduce a spatial stochastic model to provide insight into this process. Our results show that macromolecular crowding reduces noise (as measured by the kurtosis of the mRNA distribution) in a cell population by limiting the...
AbstractThe intracellular environment is crowded with proteins, DNA, and other macromolecules. Under...
Previous works have reported significant effects of macromolecular crowding on the structure and beh...
Biological macromolecules evolve and function within intracellular environments that are crowded wit...
We seek to elucidate the role of macromolecular crowding in transcription and translation. It is wel...
AbstractStudies of macromolecular crowding have shown its important effects on molecular transport a...
Heterogeneity is an integral property of many biological responses from molecular scales to members ...
<p>The integration of synthetic and cell-free biology has made tremendous strides towards creating a...
AbstractThe intracellular environment is crowded with proteins, DNA, and other macromolecules. Under...
Understanding the dynamics of complex enzymatic reactions in highly crowded small volumes is crucial...
Understanding the dynamics of complex enzymatic reactions in highly crowded small volumes is crucial...
Understanding the dynamics of complex enzymatic reactions in highly crowded small volumes is crucial...
\u3cp\u3eUnderstanding the dynamics of complex enzymatic reactions in highly crowded small volumes i...
Understanding the dynamics of complex enzymatic reactions in highly crowded small volumes is crucial...
Understanding the dynamics of complex enzymatic reactions in highly crowded small volumes is crucial...
AbstractIt is well established, that biochemical reactions are dependent on pH, ionic strength, temp...
AbstractThe intracellular environment is crowded with proteins, DNA, and other macromolecules. Under...
Previous works have reported significant effects of macromolecular crowding on the structure and beh...
Biological macromolecules evolve and function within intracellular environments that are crowded wit...
We seek to elucidate the role of macromolecular crowding in transcription and translation. It is wel...
AbstractStudies of macromolecular crowding have shown its important effects on molecular transport a...
Heterogeneity is an integral property of many biological responses from molecular scales to members ...
<p>The integration of synthetic and cell-free biology has made tremendous strides towards creating a...
AbstractThe intracellular environment is crowded with proteins, DNA, and other macromolecules. Under...
Understanding the dynamics of complex enzymatic reactions in highly crowded small volumes is crucial...
Understanding the dynamics of complex enzymatic reactions in highly crowded small volumes is crucial...
Understanding the dynamics of complex enzymatic reactions in highly crowded small volumes is crucial...
\u3cp\u3eUnderstanding the dynamics of complex enzymatic reactions in highly crowded small volumes i...
Understanding the dynamics of complex enzymatic reactions in highly crowded small volumes is crucial...
Understanding the dynamics of complex enzymatic reactions in highly crowded small volumes is crucial...
AbstractIt is well established, that biochemical reactions are dependent on pH, ionic strength, temp...
AbstractThe intracellular environment is crowded with proteins, DNA, and other macromolecules. Under...
Previous works have reported significant effects of macromolecular crowding on the structure and beh...
Biological macromolecules evolve and function within intracellular environments that are crowded wit...