De novo emergence of genes is the most fundamental form of genetic diversity that is attracting the attention of the scientific
community. Identification of short open reading frames (sORFs) from the non-coding regions of different genomes has been leading
this thought recently. The coding potential of these newly identified sORFs have been investigated through experimental and
computational approaches in recent studies. In the present work we have tried to make peptides from intergenic sequences of D.
melanogaster genome leading to therapeutic applications. Towards this goal of making novel peptides from non-coding genome, we
have found strong computational evidence of 145 peptides with conformational stability from the intergenic sequences of D.
melanogaster. The structure of these completely unique peptides was predicted using ab initio method. The function annotation of these
peptides was carried out using this structural information. The newly generated proteins were categorised as DNA/Protein/ion
binding proteins, electron transporters and a very few as enzymes too. Experimental studies can certainly provide validations to these
preliminary findings. This work provides further evidence of untapped potential of non-coding genome.
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