Dgcr8 knockout approaches to understand microRNA functions in vitro and in vivo

被引:0
|
作者
Wen-Ting Guo
Yangming Wang
机构
[1] Peking Union Medical College and Chinese Academy of Medical Sciences,Central Laboratory, Peking Union Medical College Hospital
[2] Peking University,Beijing Key Laboratory of Cardiometabolic Molecular Medicine, Institute of Molecular Medicine
来源
关键词
Drosha; Cell cycle; Glycolysis; Alternative splicing; Glial progenitor cells; Reproductive system; Neural system; Immune system;
D O I
暂无
中图分类号
学科分类号
摘要
Biologic function of the majority of microRNAs (miRNAs) is still unknown. Uncovering the function of miRNAs is hurdled by redundancy among different miRNAs. The deletion of Dgcr8 leads to the deficiency in producing all canonical miRNAs, therefore, overcoming the redundancy issue. Dgcr8 knockout strategy has been instrumental in understanding the function of miRNAs in a variety of cells in vitro and in vivo. In this review, we will first give a brief introduction about miRNAs, miRNA biogenesis pathway and the role of Dgcr8 in miRNA biogenesis. We will then summarize studies performed with Dgcr8 knockout cell models with a focus on embryonic stem cells. After that, we will summarize results from various in vivo Dgcr8 knockout models. Given significant phenotypic differences in various tissues between Dgcr8 and Dicer knockout, we will also briefly review current progresses on understanding miRNA-independent functions of miRNA biogenesis factors. Finally, we will discuss the potential use of a new strategy to stably express miRNAs in Dgcr8 knockout cells. In future, Dgcr8 knockout approaches coupled with innovations in miRNA rescue strategy may provide further insights into miRNA functions in vitro and in vivo.
引用
收藏
页码:1697 / 1711
页数:14
相关论文
共 50 条
  • [21] Role of components of microRNA machinery in carcinogenesis: targeting DGCR8 impairs pancreatic tumors growth
    Jo, S.
    Soncourt, A.
    Torrisani, J.
    Cordelier, P.
    HUMAN GENE THERAPY, 2018, 29 (12) : A49 - A49
  • [22] Cobalt(III) Protoporphyrin Activates the DGCR8 Protein and Can Compensate microRNA Processing Deficiency
    Barr, Ian
    Weitz, Sara H.
    Atkin, Talia
    Hsu, PeiKen
    Karayiorgou, Maria
    Gogos, Joseph A.
    Weiss, Shimon
    Guo, Feng
    CHEMISTRY & BIOLOGY, 2015, 22 (06): : 793 - 802
  • [23] DGCR8 is essential for microRNA biogenesis and silencing of embryonic stem cell self-renewal
    Yangming Wang
    Rostislav Medvid
    Collin Melton
    Rudolf Jaenisch
    Robert Blelloch
    Nature Genetics, 2007, 39 : 380 - 385
  • [24] DGCR8 is essential for microRNA biogenesis and silencing of embryonic stem cell self-renewal
    Wang, Yangming
    Medvid, Rostislav
    Melton, Collin
    Jaenisch, Rudolf
    Blelloch, Robert
    NATURE GENETICS, 2007, 39 (03) : 380 - 385
  • [25] Dimerization and Heme Binding Are Conserved in Amphibian and Starfish Homologues of the microRNA Processing Protein DGCR8
    Senturia, Rachel
    Laganowsky, Arthur
    Barr, Ian
    Scheidemantle, Brooke D.
    Guo, Feng
    PLOS ONE, 2012, 7 (07):
  • [26] An essential microRNA maturing microprocessor complex component DGCR8 is up-regulated in colorectal carcinomas
    Bora Kim
    Jae-ho Lee
    Jong Wook Park
    Taeg Kyu Kwon
    Seong Kyu Baek
    Ilseon Hwang
    Shin Kim
    Clinical and Experimental Medicine, 2014, 14 : 331 - 336
  • [27] Ferric, not ferrous, heme activates RNA-binding protein DGCR8 for primary microRNA processing
    Barr, Ian
    Smith, Aaron T.
    Chen, Yanqiu
    Senturia, Rachel
    Burstyn, Judith N.
    Guo, Feng
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2012, 109 (06) : 1919 - 1924
  • [28] The microRNA processing subunit DGCR8 is required for a T cell-dependent germinal center response
    Daum, Patrick
    Ottmann, Shannon R.
    Meinzinger, Julia
    Schulz, Sebastian R.
    Corte-Real, Joana
    Hauke, Manuela
    Roth, Edith
    Schuh, Wolfgang
    Mielenz, Dirk
    Jaeck, Hans-Martin
    Pracht, Katharina
    FRONTIERS IN IMMUNOLOGY, 2022, 13
  • [29] Dgcr8 functions in the secondary heart field for outflow tract and right ventricle development in mammals
    Racedo, Silvia E.
    Liu, Yang
    Shi, Lijie
    Zheng, Deyou
    Morrow, Bernice E.
    DEVELOPMENTAL BIOLOGY, 2024, 506 : 72 - 84
  • [30] Evidence that Primary Microrna Bends in the Presence of DGCR8 Seen using Both Saxs and FRET Measurements
    Pabit, Suzette A.
    Chen, Yen-Lin
    Usher, Grace A.
    Cook, Erik C.
    Pollack, Lois
    Showalter, Scott A.
    BIOPHYSICAL JOURNAL, 2020, 118 (03) : 222A - 222A