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Altinisik, N.

Publications and source records attributed to Altinisik, N..

2 recordsLinked to original sources

The core herpes simplex-1 fusion complex drives cell-to-cell spreading of pathological Tau

Neurodegenerative diseases such as Alzheimers disease (AD) are characterized by the pathological aggregation of the host-encoded protein Tau into amyloid fibrils. Pathologic protein aggregates composed of Tau are able to spread from cell-to-cell, thereby contributing to disease progression. The exact mechanisms of intercellular dissemination remain ill-defined. Mounting evidence links the herpes simplex virus-1 (HSV-1) to the aetiology of AD. HSV-1 is a prevalent neurotropic virus that replicates in epithelial cells at the site of infection, and subsequently establishes lifelong latency in the peripheral and central nervous systems. In the quiescent latent state, AD brains show elevated expression of structural viral proteins in the absence of virus production. We hypothesized that HSV-1 glycoproteins involved in viral attachment and fusion facilitate the intercellular spreading of proteopathic seeds. Using cellular models, we demonstrate that expression of the HSV-1 core fusion complex, essential for viral entry and direct cell-to-cell transmission, is sufficient to promote aggregate dissemination between cells. Moreover, anti-HSV-1 antibodies present in the cerebrospinal fluid of patients with HSV-1 encephalitis efficiently neutralize viral infection, block viral cell-to-cell transmission, and inhibit propagation of pathological Tau. Thus, latent HSV-1 infection of the brain could contribute to neurodegenerative disease progression, and antiviral antibodies may represent a potential therapeutic strategy.

neuroscience↗

CCB79 is a primate-specific cilium initiation factor essential to maintain neural progenitor diversity in developing brain tissue.

Identifying the genes that regulate the accurate spatiotemporal diversity of neural progenitor cells (NPCs) helps to understand the mechanisms of human neocortex expansion. In primate brains, an additional intermediate progenitor layer, the outer subventricular zone (oSVZ), facilitates the expansion of the neocortex. Here, we identify an uncharacterized gene, KIAA0408, and show that its expression is enriched in intermediate progenitors. Removing KIAA0408 in human-induced pluripotent stem cell (iPSC)-derived brain organoids results in an impaired cortical organization characterized by abnormal cell fate and patterning defects, including the depletion of intermediate and ventral progenitors. Molecularly, KIAA0408 codes for a 79-kilodalton centriolar distal appendage protein (DAP) that controls cilium biogenesis (hereafter CCB79). CCB79 forms a complex with other DAP components and specifically localizes in the DAP at the onset of ciliogenesis, and its absence blocks ciliogenesis. Mechanistically, progenitors in 3D brain tissues are unable to form cilia, which induces aberrant hedgehog signaling and causes premature differentiation. Finally, human CCB79, rather than the mouse ortholog, rescues cilia defects, suggesting that CCB79 has undergone rapid evolution from rodents to primates to fine-tune ciliogenesis for proper brain development.

neuroscience↗