The University of Tokyo · Biochemistry, Genetics and Molecular Biology
Nobuyoshi Akimitsu 교수의 연구실은 비코딩 RNA의 기능과 조절 메커니즘을 중심으로 연구를 진행하고 있습니다. 특히, 장거리 비코딩 RNA(MALAT1)가 세포 이동성 조절에 미치는 전사적 및 번역 후 조절 기여를 규명하고, UPF1과 같은 스파licing-연관 RNA 분해 경로가 정상 및 이상 mRNA의 안정성에 미치는 영향을 분석하고 있습니다. 또한, 비코딩 RNA의 분해와 생리적 기능 간의 관계, 특히 NMD 경로를 통한 조절 메커니즘과 소오퍼프린트의 생물학적 기여를 밝혀내는 데 초점을 맞추고 있습니다.
Figures are computed from collected data and may differ slightly.
MALAT‐1, a long non‐coding RNA, is associated with metastasis, but its role in the metastatic process remains unknown. Here, we show that short‐interfering RNA‐mediated MALAT‐1 silencing impaired in vitro cell motility of lung cancer cells and influenced the expression of numerous genes. In these genes, knockdown of any one of CTHRC1 , CCT4 , HMMR , or ROD1 clearly inhibited cell migration. In MALAT‐1 knockdown cells, pre‐mRNA levels were decreased in some but not all genes. Thus, our findings s
UPF1 eliminates aberrant mRNAs harboring premature termination codons, and regulates the steady-state levels of normal physiological mRNAs. Although genome-wide studies of UPF1 targets performed, previous studies did not distinguish indirect UPF1 targets because they could not determine UPF1-dependent altered RNA stabilities. Here, we measured the decay rates of the whole transcriptome in UPF1-depleted HeLa cells using BRIC-seq, an inhibitor-free method for directly measuring RNA stability. We d
Studies of various mRNAs have revealed that changes in the abundance of transcripts, through mRNA degradation, act as a critical step in the control of various biological pathways. Similarly, the regulation of non-coding RNA (ncRNA) levels is also considered to be important for their biological functions; however, far less is known about the mechanisms and biological importance of ncRNA turnover for the regulation of ncRNA functions. The growth arrest-specific 5 (GAS5) ncRNA accumulates during g
Changing the abundance of transcripts by regulated RNA degradation is a critical step in the control of various biological pathways. Recently, genome-wide inhibitor-free technologies for determining RNA stabilities in mammalian cells have been developed. In these methods, endogenous RNAs are pulse labeled by uridine analogs [e.g., 4-thiouridine (4sU), 5-etyniluridine (EU) and 5'-bromo-uridine (BrU)], followed by purification of labeled de novo RNAs. These technologies have revealed that the spec
Integrative analysis using omics-based technologies results in the identification of a large number of putative short open reading frames (sORFs) with protein-coding capacity within transcripts previously identified as long noncoding RNAs (lncRNAs) or transcripts of unknown function (TUFs). sORFs were previously overlooked because of their diminutive size and the difficulty of identification by bioinformatics analyses. There is now growing evidence of the existence of potentially functional micr
Methicillin-resistant Staphylococcus aureus (MRSA) has been found worldwide and is one of the major nosocomial agents. When MRSA strains were first discovered in hospitals, resistance of MRSA to low concentrations of β-lactams was evident, but increasing resistance to high concentrations of β-
Our results indicate that topo IIalpha has an essential role in the early stages of mouse development and that depletion of topo IIalpha from the embryonic cells causes incomplete nuclear division followed by enforced cytokinesis.
Currently, hepatitis C virus (HCV) infection is considered a serious health-care problem all over the world. A good number of direct-acting antivirals (DAAs) against HCV infection are in clinical progress including NS3-4A protease inhibitors, RNA-dependent RNA polymerase inhibitors, and NS5A inhibitors as well as host targeted inhibitors. Two NS3-4A protease inhibitors (telaprevir and boceprevir) have been recently approved for the treatment of hepatitis C in combination with standard of care (p
Whole transcriptome analyses have revealed a large number of novel transcripts including long and short noncoding RNAs (ncRNAs). Currently, there is great interest in characterizing the functions of the different classes of ncRNAs and their relevance to cellular processes. In particular, nuclear long ncRNAs may be involved in controlling various aspects of biological regulation, such as stress responses. By a combination of bioinformatic and experimental approaches, we identified 25 novel nuclea
Organisms have acquired sophisticated regulatory networks that control gene expression in response to cellular perturbations. Understanding of the mechanisms underlying the coordinated changes in gene expression in response to external and internal stimuli is a fundamental issue in biology. Recent advances in high-throughput technologies have enabled the measurement of diverse biological information, including gene expression levels, kinetics of gene expression, and interactions among gene expre
Recently developed technologies have revealed that the genomes of many organisms produce transcripts that do not encode proteins. These are called non-coding RNAs. Long non-coding RNAs (lncRNAs) are important regulators of the expression of their target genes at the levels of transcription, translation, and degradation. Multiple studies have demonstrated a role for lncRNAs in various biological responses, including pathogenic infection. Upon pathogenic infection, the expression levels of lncRNAs
Organisms have evolved an elaborate set of quality control systems to ensure the fidelity of the genetic information flow. The mRNA surveillance systems work in this context by monitoring the quality of mRNAs to ensure that they are suitable for translation. In this review, recent achievements in the investigation of mRNA surveillance pathways, including nonsense-mediated mRNA decay and nonstop-mediated mRNA surveillance pathway, will be discussed.
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