Mechanisms of long noncoding RNA function in development and disease

Механизмы функционирования длинных некодирующих РНК в развитии и при заболеваниях
Phillip Grote, Bernhard G. Herrmann, Sandra U. Schmitz
2016-03-23

cancer biomarkerscellular differentiationgene expression regulationlong noncoding RNAsorganogenesis
Since decades it has been known that non-protein-coding RNAs have important cellular functions. Deep sequencing recently facilitated the discovery of thousands of novel transcripts, now classified as long noncoding RNAs (lncRNAs), in many vertebrate and invertebrate species. LncRNAs are involved in a wide range of cellular mechanisms, from almost all aspects of gene expression to protein translation and stability. Recent findings implicate lncRNAs as key players of cellular differentiation, cell lineage choice, organogenesis and tissue homeostasis. Moreover, lncRNAs are involved in pathological conditions such as cancer and cardiovascular disease, and therefore provide novel biomarkers and pharmaceutical targets. Here we discuss examples illustrating the versatility of lncRNAs in gene control, development and differentiation, as well as in human disease.
1
Deep sequencing has enabled the discovery of thousands of long noncoding RNA transcripts across vertebrate and invertebrate species.
2
Disease-associated lncRNAs may serve as novel biomarkers and pharmaceutical targets.
3
LncRNAs are implicated in pathological conditions including cancer and cardiovascular disease.
4
LncRNAs contribute to cellular differentiation, cell-lineage decisions, organogenesis, and tissue homeostasis.
5
LncRNAs regulate diverse cellular processes, including gene expression, protein translation, and protein stability.

long noncoding RNAs (lncRNAs) in vertebrate and invertebrate cells, development, and disease

the molecular mechanisms and functional roles of lncRNAs in gene regulation, cellular differentiation, organogenesis, tissue homeostasis, and disease

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2016-03-23
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Phillip Grote
Bernhard G. Herrmann
Sandra U. Schmitz
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