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A time-resolved multi-omic atlas of the developing mouse stomach.


ABSTRACT: The mammalian stomach is structurally highly diverse and its organ functionality critically depends on a normal embryonic development. Although there have been several studies on the morphological changes during stomach development, a system-wide analysis of the underlying molecular changes is lacking. Here, we present a comprehensive, temporal proteome and transcriptome atlas of the mouse stomach at multiple developmental stages. Quantitative analysis of 12,108 gene products allows identifying three distinct phases based on changes in proteins and RNAs and the gain of stomach functions on a longitudinal time scale. The transcriptome indicates functionally important isoforms relevant to development and identifies several functionally unannotated novel splicing junction transcripts that we validate at the peptide level. Importantly, many proteins differentially expressed in stomach development are also significantly overexpressed in diffuse-type gastric cancer. Overall, our study provides a resource to understand stomach development and its connection to gastric cancer tumorigenesis.

SUBMITTER: Li X 

PROVIDER: S-EPMC6249217 | biostudies-literature | 2018 Nov

REPOSITORIES: biostudies-literature

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A time-resolved multi-omic atlas of the developing mouse stomach.

Li Xianju X   Zhang Chunchao C   Gong Tongqing T   Ni Xiaotian X   Li Jin'e J   Zhan Dongdong D   Liu Mingwei M   Song Lei L   Ding Chen C   Xu Jianming J   Zhen Bei B   Wang Yi Y   Qin Jun J  

Nature communications 20181121 1


The mammalian stomach is structurally highly diverse and its organ functionality critically depends on a normal embryonic development. Although there have been several studies on the morphological changes during stomach development, a system-wide analysis of the underlying molecular changes is lacking. Here, we present a comprehensive, temporal proteome and transcriptome atlas of the mouse stomach at multiple developmental stages. Quantitative analysis of 12,108 gene products allows identifying  ...[more]

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