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Ballestin Ballestin, J.

Publications and source records attributed to Ballestin Ballestin, J..

2 recordsLinked to original sources

Int&in: a machine learning-based web server for split site identification in inteins

Inteins are proteins that excise themselves out of host proteins and ligate the flanking polypeptides in an auto-catalytic process called protein splicing. They are gaining momentum in synthetic biology for their ability to post-translationally modify proteins of interest. In nature, inteins are either contiguous or split, in which case the two intein fragments must first form a complex for the splicing to occur. So far, heuristic methods have been employed whenever a new split site in an intein had to be identified. To make the process of split site identification in inteins faster, easier and less costly, we developed Int&in, a web server that uses a gaussian Naive Bayes machine learning model to predict active and inactive split sites with high accuracy. The model was trained on a data set generated by us and validated using a large diverse data set from the literature, resulting in an accuracy of 0.76. Int&in will facilitate the engineering of novel split inteins for applications in biotechnology and synthetic biology.

synthetic biology↗

Identification of functional Npu DnaE and gp41-1 inteins split in three fragments

Inteins are special proteins that auto-catalytically carry out a protein splicing reaction. Due to their ability to post-translationally modify target proteins in vitro and in vivo, they are used in different applications, ranging from protein purification to the construction of Boolean logic gates. So far inteins have been found to be either encoded by a single gene (contiguous inteins) or by two separate ones (split inteins). Previously, it has been shown that the contiguous Ssp and Rma DnaB inteins and the split Npu DnaE intein could be artificially split in three fragments and retain functionality. Here we report the identification of novel split sites within the N-terminal fragments of the Npu DnaE and gp41-1 split inteins that lead to synthetic functional three-piece versions of these inteins. These variants contribute to the toolkit of three-piece inteins that could be used in biotechnological applications based on highly-fragmented inteins.

molecular biology↗