Qiong Yang | Massachusetts Institute of Technology (MIT) (original) (raw)

Qiong Yang

Supervisors: Alexander van Oudenaarden

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Papers by Qiong Yang

Research paper thumbnail of Circadian gating of the cell cycle revealed in single cyanobacterial cells

Abstract Although major progress has been made in uncovering the machinery that underlies individ... more Abstract Although major progress has been made in uncovering the machinery that underlies individual biological clocks, much less is known about how multiple clocks coordinate their oscillations. We simultaneously tracked cell division events and circadian phases of individual cells of the cyanobacterium Synechococcus elongatus and fit the data to a model to determine when cell cycle progression slows as a function of circadian and cell cycle phases.

Research paper thumbnail of Elevated ATPase Activity of KaiC Applies a Circadian Checkpoint on Cell Division in< i> Synechococcus elongatus</i>

A circadian clock coordinates physiology and behavior in diverse groups of living organisms. Anot... more A circadian clock coordinates physiology and behavior in diverse groups of living organisms. Another major cyclic cellular event, the cell cycle, is regulated by the circadian clock in the few cases where linkage of these cycles has been studied. In the cyanobacterium Synechococcus elongatus, the circadian clock gates cell division by an unknown mechanism.

Research paper thumbnail of Heritable stochastic switching revealed by single-cell genealogy

The partitioning and subsequent inheritance of cellular factors like proteins and RNAs is a ubiqu... more The partitioning and subsequent inheritance of cellular factors like proteins and RNAs is a ubiquitous feature of cell division. However, direct quantitative measures of how such nongenetic inheritance affects subsequent changes in gene expression have been lacking. We tracked families of the yeast Saccharomyces cerevisiae as they switch between two semi-stable epigenetic states.

Research paper thumbnail of Modeling the cell cycle: why do certain circuits oscillate?

Computational modeling and the theory of nonlinear dynamical systems allow one to not simply desc... more Computational modeling and the theory of nonlinear dynamical systems allow one to not simply describe the events of the cell cycle, but also to understand why these events occur, just as the theory of gravitation allows one to understand why cannonballs fly in parabolic arcs. The simplest examples of the eukaryotic cell cycle operate like autonomous oscillators. Here, we present the basic theory of oscillatory biochemical circuits in the context of the Xenopus embryonic cell cycle.

Research paper thumbnail of Circadian gating of the cell cycle revealed in single cyanobacterial cells

Abstract Although major progress has been made in uncovering the machinery that underlies individ... more Abstract Although major progress has been made in uncovering the machinery that underlies individual biological clocks, much less is known about how multiple clocks coordinate their oscillations. We simultaneously tracked cell division events and circadian phases of individual cells of the cyanobacterium Synechococcus elongatus and fit the data to a model to determine when cell cycle progression slows as a function of circadian and cell cycle phases.

Research paper thumbnail of Elevated ATPase Activity of KaiC Applies a Circadian Checkpoint on Cell Division in< i> Synechococcus elongatus</i>

A circadian clock coordinates physiology and behavior in diverse groups of living organisms. Anot... more A circadian clock coordinates physiology and behavior in diverse groups of living organisms. Another major cyclic cellular event, the cell cycle, is regulated by the circadian clock in the few cases where linkage of these cycles has been studied. In the cyanobacterium Synechococcus elongatus, the circadian clock gates cell division by an unknown mechanism.

Research paper thumbnail of Heritable stochastic switching revealed by single-cell genealogy

The partitioning and subsequent inheritance of cellular factors like proteins and RNAs is a ubiqu... more The partitioning and subsequent inheritance of cellular factors like proteins and RNAs is a ubiquitous feature of cell division. However, direct quantitative measures of how such nongenetic inheritance affects subsequent changes in gene expression have been lacking. We tracked families of the yeast Saccharomyces cerevisiae as they switch between two semi-stable epigenetic states.

Research paper thumbnail of Modeling the cell cycle: why do certain circuits oscillate?

Computational modeling and the theory of nonlinear dynamical systems allow one to not simply desc... more Computational modeling and the theory of nonlinear dynamical systems allow one to not simply describe the events of the cell cycle, but also to understand why these events occur, just as the theory of gravitation allows one to understand why cannonballs fly in parabolic arcs. The simplest examples of the eukaryotic cell cycle operate like autonomous oscillators. Here, we present the basic theory of oscillatory biochemical circuits in the context of the Xenopus embryonic cell cycle.

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