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Bomba-Warczak, E. K.

Publications and source records attributed to Bomba-Warczak, E. K..

2 recordsLinked to original sources

Pro-cognitive reshaping of neuronal dynamics by a human CSF-based factor

Neuronal connection dysfunction is a convergent cause of cognitive deficits in mental disorders. Cognitive processes are finely regulated at the synaptic level by membrane proteins, some of which are shed and detectable in patients cerebrospinal fluid (CSF). However, whether these soluble synaptic proteins can harnessed as innovative pro-cognitive factors to treat brain disorders remains unclear. Here, we use quantitative proteomics to identify shed synaptic proteins dysregulated in the CSF of subjects with schizophrenia (SCZ), a mental disorder characterized by cognitive and synaptic dysfunction. The level of a yet uncharacterized soluble form of the voltage-gated calcium channel auxiliary subunit, 2{delta}-1, is robustly reduced in SCZ CSF. Remarkably, soluble 2{delta}-1 is convergently downregulated across several brain disorder CSF proteomes. We show that the brain releases soluble 2{delta}-1 in an activity-dependent manner, which can reorganize neuronal network dynamics by binding to synaptic targets and promoting inhibitory neuron plasticity. A single brain injection of a synthetic soluble 2{delta}-1 improved interneuron and cognitive deficits in a mutant mouse model of SCZ and cortical dysfunction. These findings underscore the potential of shed synaptic proteins as novel therapeutic agents capable of enhancing brain function in diverse brain disorders characterized by cognitive impairment.

neuroscience↗

Exceptional longevity of mammalian ovarian and oocyte macromolecules throughout the reproductive lifespan

The mechanisms contributing to age-related deterioration of the female reproductive system are complex, however aberrant protein homeostasis is a major contributor. We elucidated exceptionally stable proteins, structures, and macromolecules that persist in mammalian ovaries and gametes across the reproductive lifespan. Ovaries exhibit localized structural and cell-type specific enrichment of stable macromolecules in both the follicular and extrafollicular environments. Moreover, ovaries and oocytes both harbor a panel of exceptionally long-lived proteins, including cytoskeletal, mitochondrial, and oocyte-derived proteins. The exceptional persistence of these long-lived molecules suggest a critical role in lifelong maintenance and age-dependent deterioration of reproductive tissues. One sentence summaryExceptionally long-lived macromolecules in mammalian ovaries and oocytes as pillars for lifelong reproductive health span.

physiology↗