Advances in engineered trans-acting regulatory RNAs and their application in bacterial genome engineering

Author:

Ahmed Waqas1,Hafeez Mian Abdul23,Ahmed Rais4

Affiliation:

1. 0000 0001 0067 3588 grid.411863.9 College of Life Sciences Guangzhou University Guangzhou P. R. China

2. grid.412967.f Department of Parasitology University of Veterinary and Animal Sciences 54000 Lahore Pakistan

3. 0000 0004 1936 8198 grid.34429.38 Department of Pathobiology, Ontario Veterinary College University of Guelph N1G 2W1 Guelph ON Canada

4. grid.412967.f Department of Microbiology University of Veterinary and Animal Sciences 54000 Lahore Pakistan

Abstract

Abstract Small noncoding RNAs, a large class of ancient posttranscriptional regulators, are increasingly recognized and utilized as key modulators of gene expression in a broad range of microorganisms. Owing to their small molecular size and the central role of Watson–Crick base pairing in defining their interactions, structure and function, numerous diverse types of trans-acting RNA regulators that are functional at the DNA, mRNA and protein levels have been experimentally characterized. It has become increasingly clear that most small RNAs play critical regulatory roles in many processes and are, therefore, considered to be powerful tools for genetic engineering and synthetic biology. The trans-acting regulatory RNAs accelerate this ability to establish potential framework for genetic engineering and genome-scale engineering, which allows RNA structure characterization, easier to design and model compared to DNA or protein-based systems. In this review, we summarize recent advances in engineered trans-acting regulatory RNAs that are used in bacterial genome-scale engineering and in novel cellular capabilities as well as their implementation in wide range of biotechnological, biological and medical applications.

Publisher

Oxford University Press (OUP)

Subject

Applied Microbiology and Biotechnology,Biotechnology,Bioengineering

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