Synthetic biology approach revealed enhancement in haeme oxygenase-1 gene expression by codon pair optimization while reduction by codon deoptimization

Author:

Khandia Rekha1,Pandey Megha Katare2,Khan Azmat Ali3,Baklanov Igor4,Alanazi Amer M.3,Nepali Prakash5,Gurjar Pankaj67,Choudhary Om Prakash8

Affiliation:

1. Department of Biochemistry and Genetics, Barkatullah University, Bhopal, MP, India

2. Translational Medicine Center, All India Institute of Medical Sciences, Bhopal, MP, India

3. Pharmaceutical Biotechnology Laboratory, Department of Pharmaceutical Chemistry, College of Pharmacy, King Saud University, Riyadh, Saudi Arabia

4. Department of Philosophy, North Caucasus Federal University, Pushkina, Stavropol, Russia

5. Bhimad Primary Health Care Center, Government of Nepal, Tanahun, Nepal

6. Centre for Global Health Research, Saveetha Medical College and Hospital, Saveetha Institute of Medical and Technical Sciences, Saveetha University, Chennai, Tamil Nadu, India

7. Department of Science and Engineering, Novel Global Community Educational Foundation, Hebersham, NSW, Australia

8. Department of Veterinary Anatomy, College of Veterinary Science, Guru Angad Dev Veterinary and Animal Sciences University (GADVASU), Rampura Phul, Bathinda, Punjab, India

Abstract

Haem oxygenase-1 (HO-1) is a ubiquitously expressed gene involved in cellular homoeostasis, and its imbalance in expression results in various disorders. To alleviate such disorders, HO-1 gene expression needs to be modulated. Codon usage bias results from evolutionary forces acting on any nucleotide sequence and determines the gene expression. Like codon usage bias, codon pair bias also exists, playing a role in gene expression. In the present study, HO-1 gene was recoded by manipulating codon and codon pair bias, and four such constructs were made through codon/codon pair deoptimization and codon/codon pair optimization to reduce and enhance the HO-1 gene expression. Codon usage analysis was done for these constructs for four tissues brain, heart, pancreas and liver. Based on codon usage in different tissues, gene expression of these tissues was determined in terms of the codon adaptation index. Based on the codon adaptation index, minimum free energy, and translation efficiency, constructs were evaluated for enhanced or decreased HO-1 expression. The analysis revealed that for enhancing gene expression, codon pair optimization, while for reducing gene expression, codon deoptimization is efficacious. The recoded constructs developed in the study could be used in gene therapy regimens to cure HO-1 over or underexpression-associated disorders.

Publisher

Ovid Technologies (Wolters Kluwer Health)

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