InSysBio modelers evaluated tau protein phosphorylation related targets for Alzheimer’s disease treatment

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February 26, 2018

February 26, 2018

InSysBio continues to investigate the mechanisms underlying Alzheimer’s disease (AD) using the quantitative systems pharmacology (QSP) modeling approach. The part of QSP model describing tau protein was published in the PLOS ONE journal. This is one of more than dozen InSysBio publications in AD area during last seven years.

There is still no clear understanding what is the driving force of AD progression. The main hypotheses of the pathology are based on amyloid beta plaques or tau protein aggregation.

Tau protein (or MAPT, microtubule-associated protein tau) stabilizes the cytoskeleton in normal cells, but it doesn’t function properly in neurons of AD patients, it undergoes hyperphosphorylation and aggregates into neurofibrillary tangles within neurons. Normally, only some of the numerous phosphorylation sites of tau are phosphorylated. Therefore drugs for the tauopathies treatment could target pathological tau phosphorylation.

Different phosphorylation states contribute unequally in the pathology. So understanding the relative contribution of each kinase and phosphatase to phosphorylation of distinct sites is important for searching the principal drug targets. This was the goal of the work.

If a protein has n phosphorylation sites, then there are 2n possible phosphorylation states. Furthermore, the sequence of protein phosphorylation and dephosphorylation processes is regulated in a complicated way. The model developers assumed that phosphorylation of distinct sites is partially independent. It allowed to overcome the combinatorial explosion problem.

Four kinases (GSK3?, PKA, CDK5 and p38?) and one phosphatase (PP2A) were selected from the plurality of tau (de)phosphorylating enzymes. Ten phosphorylation sites which are of specific interest for the clinical research were selected from a few dozens of potentially phosphorylable sites of tau protein. This selection was based on the published experimental data. The modelers also have incorporated so-called pseudoresidue which described phosphorylation sites aside from the ten described above. This is the first effort of estimation of tau protein state sensitivity to key enzymes using real kinetic data.

“We’ve taken the first step in understanding of (de)phosphorylation patterns of each tau protein residue by different enzymes. Our model may suggest the role of each tau kinase or phosphatase plays in AD pathogenesis as well as the most potent targets for its treatment,” commented Alexander Stepanov, the leading contributor of the article.

“The published model is another brick in the integrated QSP model which is now developed in InSysBio that may help to find the treatment of AD,” said Tatiana Karelina, PhD, Head of the Neurodegenerative Diseases modeling group at InSysBio.

About InSysBio

InSysBio (formerly Institute for System Biology Moscow) was founded in 2004 and has an extensive track record of helping pharmaceutical companies to make right decisions on the critical stages of drug research and development by application of quantitative systems pharmacology (QSP) modeling. InSysBio’s innovative approach has already become a part of the drug development process implemented by our strategic partners: nowadays there are more than 100 completed projects in collaboration with leaders of pharmaceutical industry. The company has published a lot of scientific studies in various therapeutic areas. InSysBio team is developing software and tools for QSP and continuously improves methods for biological modeling. For more information about InSysBio, its solutions and services, visit www.insysbio.com.

June 2020
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1. 02 Jun 2020 13:24 InSysBio to announce the launch of QSP model of COVID-19 The new open source project to be developed and updated Online InSysBio, one of the world’s pioneers of Quantitative Systems Pharmacology (QSP) modeling, announces the launch of its fundamentally new project in response to the ongoing global threat, the open source QSP model of COVID-19. In accordance with its mission, which is to assist pharmaceutical industry to speed up the delivery of the cure to patients, InSysBio team could not stay aside. Thus, the aim of the new project is to develop QSP model of COVID-19 describing virus and host cell life cycles, innate and adoptive immune response and possible therapeutic treatments.
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1. 05 Jun 2020 15:04 InSysBio to present IRT Navigator 3 InSysBio presents IRT Navigator 3 which is an application software providing intuitive interface to work with the Immune Response Template Database in accordance with the user’s needs. It supplies the navigation within the schemes and components and efficient development of QSP models based on IRT Database.
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1. 08 Jun 2020 15:30 InSysBio to perform the first step in development of COVID-19 QSP model InSysBio has performed the first step in the direction of development of QSP model of COVID-19 describing virus and host cell life cycles, innate and adoptive immune response and possible therapeutic treatments.
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1. 12 Jun 2020 16:45 InSysBio to release the new version of Cytocon DB 1.1.6.4 We are glad to announce the release of the new version of Cytocon DB 1.1.6.4. The DB was significantly extended with new data due to well-coordinated workflow of Cytocon DB team and its new members. Namely, 54 diseases, 24 tissues, 42 molecules, 24 cells and 3701 concentrations were introduced.
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1. 17 Jun 2020 15:48 InSysBio to welcome its new team member Dr. Neil Benson InSysBio announces the appointment of Dr. Neil Benson as Principal Consultant in area of business development (Edinburgh-Moscow-16.06.2020) InSysBio, one of the world’s pioneers of Quantitative Systems Pharmacology (QSP) modeling, is proud to announce its new team member Dr. Neil Benson! Dr. Benson has joined InSysBio as Principal Consultant in area of business development of both INSYSBIO LLC and INSYSBIO UK LIMITED. In his capacity as Principal Consultant to InSysBio, he will support further development of the outstanding IO and AD QSP offering of the company.
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1. 22 Jun 2020 17:04 InSysBio team posters to be presented at AACR Virtual Annual Meeting II AACR Virtual Annual Meeting II has begun! American Association for Cancer Research Annual Meeting is held virtually this year on June 22-24 due to COVID-19 spread. Today InSysBio team's posters were published on AACR website
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1. 30 Jun 2020 15:45 InSysBio to present COVID-19 QSP model further development InSysBio continues to move forward in COVID-19 QSP model development. Its aim is to describe virus and host cell life cycles, innate and adoptive immune response and possible therapeutic treatments.
     
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