Membrane-bound Heat Shock Protein mHsp70 Is Required for Migration and Invasion of Brain Tumors

Author:

Shevtsov Maxim1234ORCID,Bobkov Danila235ORCID,Yudintceva Natalia23ORCID,Likhomanova Ruslana23ORCID,Kim Alexander2ORCID,Fedorov Evegeniy2ORCID,Fedorov Viacheslav2ORCID,Mikhailova Natalia2ORCID,Oganesyan Elena2ORCID,Shabelnikov Sergey3ORCID,Rozanov Oleg2ORCID,Garaev Timur2ORCID,Aksenov Nikolay3ORCID,Shatrova Alla3ORCID,Ten Artem4ORCID,Nechaeva Anastasiya2ORCID,Goncharova Daria2ORCID,Ziganshin Rustam6ORCID,Lukacheva Anastasiya23ORCID,Sitovskaya Daria7ORCID,Ulitin Alexey7ORCID,Pitkin Emil8ORCID,Samochernykh Konstantin27ORCID,Shlyakhto Evgeny2ORCID,Combs Stephanie E.1ORCID

Affiliation:

1. Klinikum Rechts der Isar, Technical University of Munich, Munich, Germany. 1

2. Personalized Medicine Centre, Almazov National Medical Research Centre, St. Petersburg, Russia. 2

3. Institute of Cytology of the Russian Academy of Sciences (RAS), St. Petersburg, Russia. 3

4. School of Medicine and Life Sciences, Far Eastern Federal University, Vladivostok, Russia. 4

5. Smorodintsev Research Institute of Influenza, St. Petersburg, Russia. 5

6. Shemyakin-Ovchinnikov Institute of Bioorganic Chemistry Russian Academy of Sciences (RAS), Moscow, Russia. 6

7. Polenov Neurosurgical Institute, Almazov National Medical Research Centre, St. Petersburg, Russia. 7

8. Wharton School, University of Pennsylvania, Philadelphia, Pennsylvania. 8

Abstract

Abstract Molecular chaperones, especially 70 kDa heat shock protein, in addition to their intracellular localization in cancer cells, can be exposed on the surface of the plasma membrane. We report that the membrane-associated chaperone mHsp70 of malignant brain tumors is required for high migratory and invasive activity of cancer cells. Live-cell inverted confocal microscopy of tumor samples from adult (n = 23) and pediatric (n = 9) neurooncologic patients showed pronounced protein expression on the membrane, especially in the perifocal zone. Mass spectrometry analysis of lipid rafts isolated from tumor cells confirmed the presence of the protein in the chaperone cluster (including representatives of other families, such as Hsp70, Hsc70, Hsp105, and Hsp90), which in turn, during interactome analysis, was associated with proteins involved in cell migration (e.g., Rac1, RhoC, and myosin-9). The use of small-molecule inhibitors of HSP70 (PES and JG98) led to a substantial decrease in the invasive potential of cells isolated from a tumor sample of patients, which indicates the role of the chaperone in invasion. Moreover, the use of HSP70 inhibitors in animal models of orthotopic brain tumors significantly delayed tumor progression, which was accompanied by an increase in overall survival. Data demonstrate that chaperone inhibitors, particularly JG98, disrupt the function of mHsp70, thereby providing an opportunity to better understand the diverse functions of this protein and offer aid in the development of novel cancer therapies. Significance: Membrane-bound mHsp70 is required for brain tumor cell migration and invasion and therefore could be employed as a target for anticancer therapies.

Publisher

American Association for Cancer Research (AACR)

Reference81 articles.

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