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Annotation and curation of uncharacterized proteins- challenges

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TLDR
This review enlist various methods linking annotation to structural and functional prediction of HPs that assist in the discovery of new structures and functions serving as markers and pharmacological targets for drug designing, discovery, and screening.
Abstract
Hypothetical Proteins are the proteins that are predicted to be expressed from an open reading frame (ORF), constituting a substantial fraction of proteomes in both prokaryotes and eukaryotes. Genome projects have led to the identification of many therapeutic targets, the putative function of the protein and their interactions. In this review we have enlisted various methods. Annotation linked to structural and functional prediction of hypothetical proteins assist in the discovery of new structures and functions serving as markers and pharmacological targets for drug designing, discovery and screening. Mass spectrometry is an analytical technique for validating protein characterisation. Matrix-assisted laser desorption ionization–mass spectrometry (MALDI-MS) is an efficient analytical method. Microarrays and Protein expression profiles help understanding the biological systems through a systems-wide study of proteins and their interactions with other proteins and non-proteinaceous molecules to control complex processes in cells and tissues and even whole organism. Next generation sequencing technology accelerates multiple areas of genomics research.

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Solubilization and characterization of extracellular proteins from anammox granular sludge

TL;DR: Physicochemical analyses of the granules indicated that extracellular structural matrix proteins likely have β-sheet dominated secondary structures, and alkaline and ionic liquid extractions were compared in terms of the proteins they extracted from different "Candidatus Brocadia" cultures.
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An assessment of genome annotation coverage across the bacterial tree of life

TL;DR: The analysis of bacterial genomes from the Genome Taxonomy Database revealed that 52 and 79 % of the average bacterial proteome could be functionally annotated based on protein and domain-based homology searches, respectively, highlighting the disparity in annotation coverage.
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Prioritization of potential drug targets against P. aeruginosa by core proteomic analysis using computational subtractive genomics and Protein-Protein interaction network.

TL;DR: Pseudomonas aeruginosa is an opportunistic gram-negative bacterium that has the capability to acquire resistance under hostile conditions and become a threat worldwide and is involved in nosocomial infections.
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MBSP1: a biosurfactant protein derived from a metagenomic library with activity in oil degradation.

TL;DR: A single gene encoding a protein with marked tensoactive properties that can be produced in a host cell, such as Escherichia coli, without substrate dependence is described, and has been demonstrated as the first protein with these characteristics described in the Archaea or Bacteria domains.
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Chassis optimization as a cornerstone for the application of synthetic biology based strategies in microbial secondary metabolism.

TL;DR: An overview on the strategies and tools used in the development of hosts/chassis for the heterologous expression of specialized metabolites biosynthetic gene clusters is presented and the concept of specialized host is introduced as the next step of development of expression hosts.
References
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The origins and the future of microfluidics

TL;DR: The manipulation of fluids in channels with dimensions of tens of micrometres — microfluidics — has emerged as a distinct new field that has the potential to influence subject areas from chemical synthesis and biological analysis to optics and information technology.
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Next-Generation DNA Sequencing Methods

TL;DR: An astounding potential exists for next-generation DNA sequencing technologies to bring enormous change in genetic and biological research and to enhance the authors' fundamental biological knowledge.
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Discrete Small RNA-Generating Loci as Master Regulators of Transposon Activity in Drosophila

TL;DR: Examination of piwi-interacting RNAs associated with each Drosophila Piwi protein finds that Piwi and Aubergine bind RNAs that are predominantly antisense to transposons, whereas Ago3 complexes contain predominantly sense piRNAs.
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Current two‐dimensional electrophoresis technology for proteomics

TL;DR: The current 2‐DE/MS workflow is described including the following topics: sample preparation, protein solubilization, and prefractionation; protein separation by 1‐DE with IPGs; protein detection and quantitation; computer assisted analysis of 2-DE patterns; protein identification and characterization by MS; two‐dimensional protein databases.
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Identifying proteins from two-dimensional gels by molecular mass searching of peptide fragments in protein sequence databases.

TL;DR: A rapid method for the identification of known proteins separated by two-dimensional gel electrophoresis is described in which molecular masses of peptide fragments are used to search a protein sequence database and each protein was uniquely identified from over 91,000 protein sequences.
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