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Yulia V. Lyupina

Researcher at Russian Academy of Sciences

Publications -  22
Citations -  279

Yulia V. Lyupina is an academic researcher from Russian Academy of Sciences. The author has contributed to research in topics: Proteasome & Sf9. The author has an hindex of 8, co-authored 21 publications receiving 238 citations. Previous affiliations of Yulia V. Lyupina include Russian Academy.

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An important role of the heat shock response in infected cells for replication of baculoviruses.

TL;DR: Addition of KNK437, a known inhibitor of inducible HSPs, decreased the rate of viral DNA synthesis in infected cells more than one order of magnitude and markedly suppressed the release of budded viruses indicating the importance of the heat shock response for baculovirus replication.
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New insights into the induction of the heat shock proteins in baculovirus infected insect cells.

TL;DR: Eight members of the HSP/HSC70 family were identified in Spodoptera frugiperda Sf9 cells infected with AcMNPV by 2D electrophoresis followed by mass spectrometry and a Mascot search, suggesting a supportive role of HSP90 in virus replication.
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Ubiquitin-independent proteosomal degradation of myelin basic protein contributes to development of neurodegenerative autoimmunity

TL;DR: This article showed that brain-derived proteasomes from mice with experimental encephalomyelitis (EAE) in an ubiquitin-independent manner generate significantly increased amounts of myelin basic protein peptides that induces cytotoxic lymphocytes to target mature oligodendrocytes ex vivo.

Ubiquitin-independent proteosomal degradation of myelin basic protein contributes to development of neurodegenerative autoimmunity

TL;DR: It is shown that brain‐derived proteasomes from SJL mice with experimental autoimmune encephalomyelitis (EAE) in an ubiquitin‐independent manner generate significantly increased amounts of myelin basic protein peptides that induces cytotoxic lymphocytes to target mature oligodendrocytes ex vivo.
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Proteasome functioning in breast cancer: connection with clinical-pathological factors.

TL;DR: Breast cancer development is connected with functioning of immune proteasome forms and activator PA700 in patients without estrogen α-receptors in tumor cells, which could indicate a field for search of new therapy approaches for this category of patients, which has the worst prognosis of health recovery.