The University of Tokyo · Biochemistry, Genetics and Molecular Biology
Kenzui Taniue 교수의 연구실은 비코딩 RNA, 특히 장질서형 RNA(lncRNA)와 생물분자 응집체의 기능을 중심으로 세포 신호전달 및 암 발생 메커니즘을 규명하고 있습니다. Wnt/β-catenin 경로와의 상호작용을 통해 암세포의 생존과 종양 형성에 기여하는 lncRNA의 역할을 밝혀내며, 암 진단을 위한 액체 생검 바이오마커 개발에도 기여하고 있습니다. 특히, 유전자 융합 RNA와 외부세포소포에 함유된 lncRNA를 활용한 췌장암 조기 진단 기술 개발도 핵심 연구 분야입니다.
Figures are computed from collected data and may differ slightly.
Over the past decades, research on cancer biology has focused on the involvement of protein-coding genes in cancer development. Long noncoding RNAs (lncRNAs), which are transcripts longer than 200 nucleotides that lack protein-coding potential, are an important class of RNA molecules that are involved in a variety of biological functions. Although the functions of a majority of lncRNAs have yet to be clarified, some lncRNAs have been shown to be associated with human diseases such as cancer. Lnc
Eukaryotic cells are intracellularly divided into numerous compartments or organelles, which coordinate specific molecules and biological reactions. Membrane-bound organelles are physically separated by lipid bilayers from the surrounding environment. Biomolecular condensates, also referred to membraneless organelles, are micron-scale cellular compartments that lack membranous enclosures but function to concentrate proteins and RNA molecules, and these are involved in diverse processes. Liquid-l
Wnt/β-catenin signaling plays a key role in the tumorigenicity of colon cancer. Furthermore, it has been reported that lncRNAs are dysregulated in several steps of cancer development. Here we show that β-catenin directly activates the transcription of the long noncoding RNA (lncRNA) <i>ASBEL</i> [antisense ncRNA in the ANA (Abundant in neuroepithelium area)/BTG3 (B-cell translocation gene 3) locus] and transcription factor 3 (TCF3), both of which are required for the survival and tumorigenicity
Fusion RNAs are a hallmark of some cancers. They result either from chromosomal rearrangements or from splicing mechanisms that are non-chromosomal rearrangements. Chromosomal rearrangements that result in gene fusions are particularly prevalent in sarcomas and hematopoietic malignancies; they are also common in solid tumors. The splicing process can also give rise to more complex RNA patterns in cells. Gene fusions frequently affect tyrosine kinases, chromatin regulators, or transcription facto
The Wingless (Wg)/Wnt signaling pathway is highly conserved throughout many multicellular organisms. It directs the development of diverse tissues and organs by regulating important processes such as proliferation, polarity and the specification of cell fates. Upon activation of the Wg/Wnt signaling pathway, Armadillo (Arm)/β-catenin is stabilized and interacts with the TCF family of transcription factors, which in turn activate Wnt target genes. We show here that Arm interacts with a novel BED
Extracellular vesicle lncRNAs isolated using PEViA-IP and CA19-9 together could be effective targets in liquid biopsy for PDAC diagnosis.
Mammalian genomes encode large number of long noncoding RNAs (lncRNAs) that play key roles in various biological processes, including proliferation, differentiation, and stem cell pluripotency. Recent studies have addressed that some lncRNAs are dysregulated in human cancers and may play crucial roles in tumor development and progression. Here, we show that the lncRNA <i>ZNNT1</i> is required for the proliferation and tumorigenicity of colon cancer cells with wild-type p53. <i>ZNNT1</i> knockdow
Abstract In recent years, the advent of high-throughput sequencing technologies has revealed that in addition to protein-coding genes, there are an even larger number of RNA transcripts that do not encode proteins and are instead defined as noncoding RNAs (ncRNAs). Numerous ncRNAs are misregulated in various diseases, especially cancer. We therefore attempted to identify and characterize novel long ncRNAs that regulate the tumorigenicity of colorectal cancer. Here we show that a novel long ncRNA
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