A Novel Thermostable and Processive Reverse Transcriptase from a Group II Intron of Anoxybacillus flavithermus

被引:0
|
作者
Oscorbin, Igor P. [1 ]
Filipenko, Maxim L. [1 ]
机构
[1] Russian Acad Sci ICBFM SB RAS, Inst Chem Biol & Fundamental Med, Siberian Branch, 8 Lavrentiev Ave, Novosibirsk 630090, Russia
基金
俄罗斯科学基金会;
关键词
reverse transcriptase; group II intron; Anoxybacillus flavithermus; thermal stability; processivity; reverse transcription; RT-LAMP; AVIAN-MYELOBLASTOSIS VIRUS; SITE-DIRECTED MUTAGENESIS; DNA; FIDELITY; PURIFICATION; INSERTION; PROTEINS;
D O I
10.3390/biom14010049
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Reverse transcriptases (RTs) are a family of enzymes that synthesize DNA using an RNA template and are involved in retrovirus propagation and telomere lengthening. In vitro, RTs are widely applied in various methods, including RNA-seq, RT-PCR, and RT-LAMP. Thermostable RTs from bacterial group II introns are promising tools for biotechnology due to their higher thermostability, fidelity, and processivity compared to commonly used M-MuLV RT and its mutants. However, the diversity of group II intron-encoded RTs is still understudied. In this work, we biochemically characterized a novel RT from a thermophilic bacterium, Anoxybacillus flavithermus, which was isolated from a hot spring in New Zealand and has an optimal growth temperature of around 60 degrees C. The cloned RT, named Afl RT, retained approximately 40% of the specific activity after a 45 min incubation at 50 degrees C. The optimal pH was 8.5, the optimal temperature was between 45 and 50 degrees C, and Mn2+ ions were found to be an optimal cofactor. The processivity analysis with MS2 phage gRNA (3569 b) demonstrated that Afl RT elongated fully up to 36% of the template molecules. In reverse transcription and RT-qLAMP, the enzyme allowed up to 10 copies of MS2 phage genomic RNA to be detected per reaction. Thus, Afl RT holds great potential for a variety of practical applications that require the use of thermostable and processive RTs.
引用
收藏
页数:17
相关论文
共 50 条
  • [21] Evolutionary origin of a plant mitochondrial group II intron from a reverse transcriptase/maturase-encoding ancestor
    Ahlert, Daniela
    Piepenburg, Katrin
    Kudla, Joerg
    Bock, Ralph
    JOURNAL OF PLANT RESEARCH, 2006, 119 (04) : 363 - 371
  • [22] Generation and characterization of new highly thermostable and processive M-MuLV reverse transcriptase variants
    Baranauskas, Aurimas
    Paliksa, Sigitas
    Alzbutas, Gediminas
    Vaitkevicius, Mindaugas
    Lubiene, Judita
    Letukiene, Virginija
    Burinskas, Sigitas
    Sasnauskas, Giedrius
    Skirgaila, Remigijus
    PROTEIN ENGINEERING DESIGN & SELECTION, 2012, 25 (10): : 657 - 668
  • [23] Evolutionary origin of a plant mitochondrial group II intron from a reverse transcriptase/maturase-encoding ancestor
    Daniela Ahlert
    Katrin Piepenburg
    Jörg Kudla
    Ralph Bock
    Journal of Plant Research, 2006, 119 : 363 - 371
  • [24] A three-dimensional model of a group II intron RNA and its interaction with the intron-encoded reverse transcriptase
    Dai, Lixin
    Chai, Dinggeng
    Gu, Shan-Qing
    Gabel, Jesse
    Noskov, Sergei Y.
    Blocker, Forrest J. H.
    Lambowitz, Alan M.
    Zimmerly, Steven
    MOLECULAR CELL, 2008, 30 (04) : 472 - 485
  • [25] Author Correction: Facile single-stranded DNA sequencing of human plasma DNA via thermostable group II intron reverse transcriptase template switching
    Douglas C. Wu
    Alan M. Lambowitz
    Scientific Reports, 8
  • [26] Domain structure and three-dimensional model of a group II intron-encoded reverse transcriptase
    Blocker, FJH
    Mohr, G
    Conlan, LH
    Qi, L
    Belfort, M
    Lambowitz, AM
    RNA, 2005, 11 (01) : 14 - 28
  • [27] High-throughput sequencing of human plasma RNA by using thermostable group II intron reverse transcriptases
    Qin, Yidan
    Yao, Jun
    Wu, Douglas C.
    Nottingham, Ryan M.
    Mohr, Sabine
    Hunicke-Smith, Scott
    Lambowitz, Alan M.
    RNA, 2016, 22 (01) : 111 - 128
  • [28] ORF-less and reverse-transcriptase-encoding group II introns in archaebacteria, with a pattern of homing into related group II intron ORFs
    Dai, LX
    Zimmerly, S
    RNA, 2003, 9 (01) : 14 - 19
  • [29] Non-cognate template usage and alternative priming by a group II intron-encoded reverse transcriptase
    Morozova, T
    Seo, W
    Zimmerly, S
    JOURNAL OF MOLECULAR BIOLOGY, 2002, 315 (05) : 951 - 963
  • [30] A reverse transcriptase/maturase promotes splicing by binding at its own coding segment in a group II intron RNA
    Wank, H
    SanFilippo, J
    Singh, RN
    Matsuura, M
    Lambowitz, AM
    MOLECULAR CELL, 1999, 4 (02) : 239 - 250