ROLE OF RIBOSWITCHES IN GENE REGULATION AND THEIR POTENTIAL FOR ALGAL BIOTECHNOLOGY

被引:12
作者
Nguyen, Ginnie T. D. T. [1 ]
Scaife, Mark A. [1 ]
Helliwell, Katherine E. [1 ]
Smith, Alison G. [1 ]
机构
[1] Univ Cambridge, Dept Plant Sci, Downing St, Cambridge CB2 3EA, England
基金
英国生物技术与生命科学研究理事会; 欧盟第七框架计划;
关键词
biotechnology; metabolism; microalgae; riboswitches; PYROPHOSPHATE-SENSING RIBOSWITCH; CHLAMYDOMONAS-REINHARDTII; MESSENGER-RNAS; SYNTHETIC RIBOSWITCHES; RESPONSE REGULATOR; GENOME SEQUENCE; THI-BOX; EXPRESSION; REVEALS; GREEN;
D O I
10.1111/jpy.12416
中图分类号
Q94 [植物学];
学科分类号
071001 ;
摘要
Riboswitches are regulatory elements in messenger RNA to which specific ligands can bind directly in the absence of proteins. Ligand binding alters the mRNA secondary structure, thereby affecting expression of the encoded protein. Riboswitches are widespread in prokaryotes, with over 20 different effector ligands known, including amino acids, cofactors, and Mg2+ ions, and gene expression is generally regulated by affecting translation or termination of transcription. In plants, fungi, and microalgae, riboswitches have been found, but only those that bind thiamine pyrophosphate. These eukaryotic riboswitches operate by causing alternative splicing of the transcript. Here, we review the current status of riboswitch research with specific emphasis on microalgae. We discuss new riboswitch discoveries and insights into the underlying mechanism of action, and how next generation sequencing technology provides the motivation and opportunity to improve our understanding of these rare but important regulatory elements. We also highlight the potential of microalgal riboswitches as a tool for synthetic biology and industrial biotechnology.
引用
收藏
页码:320 / 328
页数:9
相关论文
共 68 条
[31]   Eukaryotic TPP riboswitch regulation of alternative splicing involving long-distance base pairing [J].
Li, Sanshu ;
Breaker, Ronald R. .
NUCLEIC ACIDS RESEARCH, 2013, 41 (05) :3022-3031
[32]   Adenine riboswitches and gene activation by disruption of a transcription terminator [J].
Mandal, M ;
Breaker, RR .
NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2004, 11 (01) :29-35
[33]   A glycine-dependent riboswitch that uses cooperative binding to control gene expression [J].
Mandal, M ;
Lee, M ;
Barrick, JE ;
Weinberg, Z ;
Emilsson, GM ;
Ruzzo, WL ;
Breaker, RR .
SCIENCE, 2004, 306 (5694) :275-279
[34]   Genome sequence of the ultrasmall unicellular red alga Cyanidioschyzon merolae 10D [J].
Matsuzaki, M ;
Misumi, O ;
Shin-I, T ;
Maruyama, S ;
Takahara, M ;
Miyagishima, SY ;
Mori, T ;
Nishida, K ;
Yagisawa, F ;
Nishida, K ;
Yoshida, Y ;
Nishimura, Y ;
Nakao, S ;
Kobayashi, T ;
Momoyama, Y ;
Higashiyama, T ;
Minoda, A ;
Sano, M ;
Nomoto, H ;
Oishi, K ;
Hayashi, H ;
Ohta, F ;
Nishizaka, S ;
Haga, S ;
Miura, S ;
Morishita, T ;
Kabeya, Y ;
Terasawa, K ;
Suzuki, Y ;
Ishii, Y ;
Asakawa, S ;
Takano, H ;
Ohta, N ;
Kuroiwa, H ;
Tanaka, K ;
Shimizu, N ;
Sugano, S ;
Sato, N ;
Nozaki, H ;
Ogasawara, N ;
Kohara, Y ;
Kuroiwa, T .
NATURE, 2004, 428 (6983) :653-657
[35]   Alternatives to vitamin B1 uptake revealed with discovery of riboswitches in multiple marine eukaryotic lineages [J].
McRose, Darcy ;
Guo, Jian ;
Monier, Adam ;
Sudek, Sebastian ;
Wilken, Susanne ;
Yan, Shuangchun ;
Mock, Thomas ;
Archibald, John M. ;
Begley, Tadhg P. ;
Reyes-Prieto, Adrian ;
Worden, Alexandra Z. .
ISME JOURNAL, 2014, 8 (12) :2517-2529
[36]   Sequestration of a two-component response regulator by a riboswitch-regulated noncoding RNA [J].
Mellin, J. R. ;
Koutero, Mikael ;
Dar, Daniel ;
Nahori, Marie-Anne ;
Sorek, Rotem ;
Cossart, Pascale .
SCIENCE, 2014, 345 (6199) :940-943
[37]   The Chlamydomonas genome reveals the evolution of key animal and plant functions [J].
Merchant, Sabeeha S. ;
Prochnik, Simon E. ;
Vallon, Olivier ;
Harris, Elizabeth H. ;
Karpowicz, Steven J. ;
Witman, George B. ;
Terry, Astrid ;
Salamov, Asaf ;
Fritz-Laylin, Lillian K. ;
Marechal-Drouard, Laurence ;
Marshall, Wallace F. ;
Qu, Liang-Hu ;
Nelson, David R. ;
Sanderfoot, Anton A. ;
Spalding, Martin H. ;
Kapitonov, Vladimir V. ;
Ren, Qinghu ;
Ferris, Patrick ;
Lindquist, Erika ;
Shapiro, Harris ;
Lucas, Susan M. ;
Grimwood, Jane ;
Schmutz, Jeremy ;
Cardol, Pierre ;
Cerutti, Heriberto ;
Chanfreau, Guillaume ;
Chen, Chun-Long ;
Cognat, Valerie ;
Croft, Martin T. ;
Dent, Rachel ;
Dutcher, Susan ;
Fernandez, Emilio ;
Fukuzawa, Hideya ;
Gonzalez-Ballester, David ;
Gonzalez-Halphen, Diego ;
Hallmann, Armin ;
Hanikenne, Marc ;
Hippler, Michael ;
Inwood, William ;
Jabbari, Kamel ;
Kalanon, Ming ;
Kuras, Richard ;
Lefebvre, Paul A. ;
Lemaire, Stephane D. ;
Lobanov, Alexey V. ;
Lohr, Martin ;
Manuell, Andrea ;
Meier, Iris ;
Mets, Laurens ;
Mittag, Maria .
SCIENCE, 2007, 318 (5848) :245-251
[38]   A conserved RNA structure (thi box) is involved in regulation of thiamin biosynthetic gene expression in bacteria [J].
Miranda-Ríos, J ;
Navarro, M ;
Soberón, M .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2001, 98 (17) :9736-9741
[39]   Sensing small molecules by nascent RNA: A mechanism to control transcription in bacteria [J].
Mironov, AS ;
Gusarov, I ;
Rafikov, R ;
Lopez, LE ;
Shatalin, K ;
Kreneva, RA ;
Perumov, DA ;
Nudler, E .
CELL, 2002, 111 (05) :747-756
[40]   Analysis of Chlamydomonas thiamin metabolism in vivo reveals riboswitch plasticity [J].
Moulin, Michael ;
Nguyen, Ginnie T. D. T. ;
Scaife, Mark A. ;
Smith, Alison G. ;
Fitzpatrick, Teresa B. .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2013, 110 (36) :14622-14627