J

Juliane Schneider

Bernstein Center for Computational Neuroscience Tübingen

Publishes on Innovations in Medical Education, Mitochondrial Function and Pathology, Gastrointestinal motility and disorders. 4 papers and 312 citations.

4Publications
312Total Citations

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Top publicationsby citations

Stimulation of Suicidal Erythrocyte Death by Methylglyoxal
Jan P. Nicolay, Juliane Schneider, Olivier M. Niemoeller et al.|Cellular Physiology and Biochemistry|2006
Cited by 225

Diabetes increases the percentage of circulating erythrocytes exposing phosphatidylserine (PS) at the cell surface. PS-exposing erythrocytes are recognized, bound, engulfed and degraded by macrophages. Thus, PS exposure, a feature of suicidal erythrocyte death or eryptosis, accelerates clearance of affected erythrocytes from circulating blood. Moreover, PS-exposing erythrocytes bind to the vascular wall thus interfering with microcirculation. The present study explored mechanisms involved in the triggering of PS exposure by methylgloxal, an extra- and intracellular metabolite which is enhanced in diabetes. PS exposure, cell size and cytosolic Ca(2+)-activity after methylglyoxal treatment were measured by FACS analysis of annexin V binding, forward scatter and Fluo-3-fluorescence, respectively, and it was shown that the treatment significantly enhanced the percentage of PS-exposing erythrocytes at concentrations (0.3 microM) encountered in diabetic patients. Surprisingly, methylglyoxal did not significantly increase cytosolic Ca(2+) concentration, and at concentrations up to 3 microM, did not decrease the forward scatter. Instead, exposure to methylglyoxal inhibited glycolysis thus decreasing ATP and GSH concentrations. In conclusion, methylglyoxal impairs energy production and anti-oxidative defense, effects contributing to the enhanced PS exposure of circulating erythrocytes and eventually resulting in anemia and deranged microcirculation.

Physiological and pathophysiological characteristics of ataxin-3 isoforms
Daniel Weishäupl, Juliane Schneider, Barbara Peixoto Pinheiro et al.|Journal of Biological Chemistry|2018
Cited by 60Open Access

allelic variants modify the physiological and pathophysiological properties of ataxin-3. Our findings indicate that alternative splicing and interactions between different ataxin-3 isoforms affect not only major aspects of ataxin-3 function but also MJD pathogenesis. Our results stress the importance of considering isoforms of disease-causing proteins and their interplay with the normal allelic variant as disease modifiers in MJD and autosomal-dominantly inherited diseases in general.