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OriGene and ISB to Generate PeptideAtlas and 5,000-Protein SRM/MRM Database

Systems biology mass spec technology from ISB will be applied to the OriGene human protein collection. OriGene Technologies and the Institute for Systems Biology are pooling their expertise to generate a proteotypic PeptideAtlas and develop a single reaction m

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Systems biology mass spec technology from ISB will be applied to the OriGene human protein collection.

OriGene Technologies and the Institute for Systems Biology are pooling their expertise to generate a proteotypic PeptideAtlas and develop a single reaction monitoring, multiple reaction monitoring (SRM/MRM) mass spectrometry database for some 5,000 human proteins. The project will apply ISB’s systems biology mass spectrometry technology to OriGene’s collection of full length human proteins.

SRM/MRM has proved to be an ideal technology for high-throughput proteomics and clinical biomarker research and is now widely applied for biomarker identification and quantification, the organizations state. They maintain that the creation of a proteotypic PeptideAtlas and SRM/MRM standard database will enable quantitative protein analysis and facilitate lab-to-lab data validation.

“The field of proteomics combined with systems biology will push discovery further, but it is essential to validate these discoveries with a large-scale mass spectrometry standard database,” notes Leroy Hood, M.D., Ph.D., ISB’s president and co-founder. “By providing ISB with access to one of the largest collections of full-length human proteins in the world, this collaboration will rapidly accelerate the validation of ISB’s discoveries.” Established in 2000, the ISB is a nonprofit research institute dedicated to the study and application of systems biology.

OriGene Technologies is a research tools company focused on the creation of the largest commercial collection of full-length human cDNAs in a standard expression vector. The firm’s flagship product is the cDNA clone collection, a searchable gene bank of over 30,000 human full-length TrueClone cDNA collections and over 25,000 TrueORF cDNA clones. The company claims that its TrueORF cDNA clones has also led to creation of the largest offering of full-length human proteins expressed in mammalian cells.

OriGene also offers gene expression products such as the TissueScan cancer qPCR arrays for biomarker discovery and validation. In October 2009, OriGene acquired Marligen Biosciences, which has added nucleic acid purification products and Luminex multiplex detection assays for miRNA and transcription-factor profiling to its portfolio.

More recently, in March the firm completed a $16 million series B financing round to fund continued expansion of its TrueMAB™ monoclonal antibody collection. The ultimate goal of the TruMAB program is to build the largest mAb collection in the world covering the entire human genome of approximately 20,000 genes.

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Related questions

01How stable is the antibody?

A crucial question often addressed during preclinical development focuses on the in vivo stability of therapeutic antibodies. Increasing the half-life of a therapeutic antibody has several benefits ranging from higher treatment efficacy to increased advantages for the patients who will have a fewer number of therapy sessions and a reduced cost. Given these compelling benefits, following the identification of therapeutic antibodies with the desired specificity, developers usually subject them to a refinement step to increase their stability. This process is often hindered by the lack of reliable experimental tools to predict the half-life of antibodies in patients. The major hurdle of using mouse models to predict antibody stability in the serum lies in the way immunoglobulin proteins are processed by the organism. In mammals, most proteins circulating in the serum undergo constant uptake by endothelial cells and are routed through the endosomes to the lysosomal compartment for degradation. In the endosomes, immunoglobulin G (IgG) proteins are recognized and bound by a transmembrane protein, called the neonatal Fc receptor (FcRn), which mediates their recycling to the plasma membrane and subsequent release back into the serum. As a result, the half-life of IgGs are significantly extended by this mechanism. Since most therapeutic antibodies belong to the IgG class, this recycling system is very relevant for their relative stability in the body. Remarkably, the relative affinity between IgGs and FcRn is extremely disparate between different species, with the mouse receptor showing a much higher affinity than its human counterpart.

Source: www.genengnews.com ↗
02Undruggable or unscreenable?

Another obstacle to discovering new PPI inhibitors is the lack of libraries designed to hunt for them, points out Philippe Roche, PhD, senior scientist at the Integrative Structural and Chemical Biology team at the Cancer Research Center of Marseilles, France. “If you screen PPIs using libraries that were designed for kinases or GPCRs, that’s why you don’t get a lot of good results,” he says. To that end, his group began assembling a library focused on orthosteric inhibitors of PPIs. The result was 2P2Idb, a hand-curated, structural database cataloguing orthosteric inhibitors of PPIs for which the interface had been 3D characterized. From analyzing these known PPI inhibitors, and what structures they had in common, Roche and his colleagues developed a model to predict whether compounds would likely inhibit PPIs. Using this method, 2P2Idb creates an enriched screening library that dramatically increases the hit rate compared to standard libraries. Having proven their success with a small library of 1600 compounds, they are in the process of expanding the library to 10,000 compounds. Once that’s published, “the idea is to make this library available to labs around the world,” Roche says. “We will provide the library free of charge for people to be able to screen PPI targets.”

Source: www.genengnews.com ↗
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Peptide Therapy Guide Editorial Team

Editorial team for Peptide Therapy Guide.

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