Pathological tau drives ectopic nuclear speckle scaffold protein SRRM2 accumulation in neuron cytoplasm in Alzheimer’s disease

被引:0
作者
Pamela J. McMillan
Timothy J. Strovas
Misa Baum
Brooke K. Mitchell
Randall J. Eck
Nzinga Hendricks
Jeanna M. Wheeler
Caitlin S. Latimer
C. Dirk Keene
Brian C. Kraemer
机构
[1] Veterans Affairs Puget Sound Health Care System,Geriatrics Research Education and Clinical Center
[2] University of Washington,Department of Psychiatry and Behavioral Sciences
[3] University of Washington,Graduate Program in Neuroscience
[4] University of Washington,Department of Laboratory Medicine and Pathology
[5] University of Washington,Division of Gerontology and Geriatric Medicine, Department of Medicine
来源
Acta Neuropathologica Communications | / 9卷
关键词
Nuclear speckles; Alzheimer’s disease; MSUT2; PABPN1; Tau; MapT tauopathy PS19; SRRM2; SC-35; ZC3H14;
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摘要
Several conserved nuclear RNA binding proteins (sut-1, sut-2, and parn-2) control tau aggregation and toxicity in C. elegans, mice, and human cells. MSUT2 protein normally resides in nuclear speckles, membraneless organelles composed of phase-separated RNAs and RNA-binding proteins that mediate critical steps in mRNA processing including mRNA splicing. We used human pathological tissue and transgenic mice to identify Alzheimer’s disease-specific cellular changes related to nuclear speckles. We observed that nuclear speckle constituent scaffold protein SRRM2 is mislocalized and accumulates in cytoplasmic lesions in AD brain tissue. Furthermore, progression of tauopathy in transgenic mice is accompanied by increasing mislocalization of SRRM2 from the neuronal nucleus to the soma. In AD brain tissue, SRRM2 mislocalization associates with increased severity of pathological tau deposition. These findings suggest potential mechanisms by which pathological tau impacts nuclear speckle function in diverse organisms ranging from C. elegans to mice to humans. Future translational studies aimed at restoring nuclear speckle homeostasis may provide novel candidate therapeutic targets for pharmacological intervention.
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