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Journal ArticleDOI

Truncated Thioredoxin Peptides Serves as an Efficient Fusion Tag for Production of Proinsulin

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TLDR
The usage of thioredoxin as a fusion tag helped enhancing the expression of proinsulin and will significantly avoid the cost involved in solubilizing inclusion bodies.
Abstract
Background Insulin is a peptide hormone used for regulating blood glucose levels. Human insulin market is projected to grow at a rate of 12.5% annually. To meet the needs of patients, a cost effective insulin manufacturing strategy has to be developed. This can be achieved by selecting a competent host, ideal fusion tag and streamlined downstream process. Objective In this article, we have demonstrated that selecting a right fusion partner for expression of toxic proteins like insulin, plays a major role in increasing the recombinant protein yield. Methods In this article, we have focused on identifying a peptide tag fusion partner for expressing proinsulin by truncating thioredoxin tag. Truncations were carried out from both Amino and Carboxy terminus of the protein and efficiency of truncated sequences was evaluated by expressing it with proinsulin gene. FCTRX (1-15) sequence fused to proinsulin was processed further to establish downstream protocol for purification. Results Thioredoxin tag was truncated appropriately by considering the fusion tag: protein ratio. A couple of sequences ranging 10 - 15 amino acids were identified based on its in silico properties. Of these FCTRX (1-15) showed increased expression and stability of fusion protein. 156 mg of purified insulin was generated from 1g of inclusion body after enzymatic conversion and chromatographic steps. Conclusion As a result of the current study, it was concluded that FCTRX (1-15) peptide has advantageous attributes to be considered as an ideal fusion tag for expression of proinsulin. This can be further explored by expressing it with other proteins.

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References
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Journal ArticleDOI

Overview of tag protein fusions: from molecular and biochemical fundamentals to commercial systems.

TL;DR: An overview of the most frequently used and interesting recombinant hybrids containing a polypeptide fusion partner, termed affinity tag, to facilitate the purification of the targetpolypeptides are given.
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Trypsin Cleaves Exclusively C-terminal to Arginine and Lysine Residues

TL;DR: This work uses the sub-parts per million mass accuracy of a new ion trap Fourier transform mass spectrometer to achieve more than a 100-fold increased confidence in peptide identification compared with typical ion trap experiments and shows that trypsin cleaves solely C-terminal to arginine and lysine.
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Production of recombinant proteins by microbes and higher organisms.

TL;DR: The most popular system for producing recombinant mammalian glycosylated proteins is that of mammalian cells while transgenic plants such as Arabidopsis thaliana and others can generate many recombinant proteins.
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Solubilization and refolding of bacterial inclusion body proteins

TL;DR: Analysis of the dominant forces causing aggregation during inclusion body formation provides information to develop suitable mild solubilization procedures for inclusion body proteins and restoration of native-like secondary structure is assumed.
Journal ArticleDOI

Enhancement of soluble protein expression through the use of fusion tags.

TL;DR: The advent of high-throughput structural genomics programs and advances in cloning and expression technology afford a new way to compare the effectiveness of solubility tags, and this data should allow us to better predict theeffectiveness of tags currently in use, and might also provide the information needed to identify new fusion tags.
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