This would provide an insight to understand the biological functions of these unusual DNA structures and their recognition as potential therapeutic targets for diverse genetic diseases. The present review is a modest attempt to summarize the available literature, illustrating the occurrence of non-canonical structures at the molecular level in response to the environment and interaction with ligands and proteins. These non-B-DNA structures are expected to play a key role in determining genetic stability, DNA damage and repair etc. ![]() However, altered levels of gene expression are associated with many human genetic diseases including neurological disorders and cancer. In response to these various factors, the polymorphism of DNA regulates various genes via different processes like replication, transcription, translation, and recombination. The diversity in the DNA structure depends on various factors such as base sequence, ions, superhelical stress, and ligands. ![]() Apart from the predominant B-form, experimental shreds of evidence have revealed the existence of a sequence-dependent structural diversity, unusual non-canonical structures like hairpin, cruciform, Z-DNA, multistranded structures such as DNA triplex, G-quadruplex, i-motif forms, etc. For the last seven decades, this has been a leading light in the course of the development of modern biology and biomedical science.
0 Comments
Leave a Reply. |
AuthorWrite something about yourself. No need to be fancy, just an overview. ArchivesCategories |