systemsbio ucsd.edu

Zhong Lab - Research

We discovered transposon-mediated re-wiring of transcription networks that govern pre-implantation embryonic development . 2010 We contributed to initiating comparative epigenomics, a research field that studies genomic functions by cross-species epigenomic comparison . 2012 We contributed to the derivation of the rules of dynamic gene regulation and temporal epigenomic changes . Single cell analysis of cell fate. Evolution of mammalian gene regulatory networks. We brought evolutionary biology ideas.

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PAGE TITLE

Zhong Lab - Research

DESCRIPTION

We discovered transposon-mediated re-wiring of transcription networks that govern pre-implantation embryonic development . 2010 We contributed to initiating comparative epigenomics, a research field that studies genomic functions by cross-species epigenomic comparison . 2012 We contributed to the derivation of the rules of dynamic gene regulation and temporal epigenomic changes . Single cell analysis of cell fate. Evolution of mammalian gene regulatory networks. We brought evolutionary biology ideas.

CONTENT

This site systemsbio.ucsd.edu states the following, "We discovered transposon-mediated re-wiring of transcription networks that govern pre-implantation embryonic development." Our analyzers noticed that the webpage stated " 2010 We contributed to initiating comparative epigenomics, a research field that studies genomic functions by cross-species epigenomic comparison ." The Website also stated " 2012 We contributed to the derivation of the rules of dynamic gene regulation and temporal epigenomic changes . Single cell analysis of cell fate. Evolution of mammalian gene regulatory networks. We brought evolutionary biology ideas."

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Protein structures are flexible and undergo structural rearrangements as part of their function. Ligned fragment pairs allowing T. Yuzhen Ye and Adam Godzik. Flexible structure alignment by chaining aligned fragment pairs allowing twists. For multiple flexible structure comparison.