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Grinberg, L. T.

Publications and source records attributed to Grinberg, L. T..

2 recordsLinked to original sources

Compromised function of an ESCRT complex promotes endolysosomal escape of tau seeds and propagation of tau aggregation

Intercellular propagation of protein aggregation is emerging as a key mechanism in the progression of several neurodegenerative diseases, including Alzheimers Disease and frontotemporal dementia. However, we lack a systematic understanding of the cellular path-ways controlling prion-like propagation. To uncover such pathways, we performed CRISPR interference (CRISPRi) screens in a human cell-based model of propagation of tau aggregation. Our screens uncovered that knockdown of several components of the ESCRT machinery, including CHMP6, or CHMP2A in combination with CHMP2B (a gene linked to familial fronto-temporal dementia), promote propagation of tau aggregation. We found that knockdown of these genes caused damage to endolysosomal membranes, consistent with a role for the ESCRT pathway in endolysosomal membrane repair. Leakiness of the endolysosomal compartment significantly enhanced prion-like propagation of tau aggregation, likely by making tau seeds more available to pools of cytoplasmic tau. Together, these findings suggest that endolysosomal escape is a critical step in tau propagation.

cell biology

Multiplex immunofluorescence methods in neurodegenerative diseases

The application of multiplex immunofluorescence to human post-mortem tissue would drive observational studies of selective vulnerability in neurodegenerative proteinopathies. Efficient elution of antibodies is critical for flexibility of antibody combinations and the ability to utilize a sample in multiple rounds of immunostaining. Here, we test two elution strategies for antibodies relevant to the study of selective vulnerability in neurodegenerative diseases in post-mortem human samples from both long-fixed and short-fixed tissue. Both 2-Mercaptoethanol/SDS-based and Urea/SDS/Glycine-based elution strategies work well with the antibodies selected, confirming observations from previous studies with other antibody types.

pathology