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Duan, P.

Publications and source records attributed to Duan, P..

2 recordsLinked to original sources

Structures of AT8 and PHF1 Phospho-Mimetic Tau: Insights Into the Posttranslational Modification Code of Tau Amyloid Formation

The microtubule-associated protein tau aggregates into amyloid fibrils in Alzheimers disease and other neurodegenerative diseases. In these tauopathies, tau is hyperphosphorylated, suggesting that this posttranslational modification may induce pathological tau aggregation. Tau is also phosphorylated in normal developing brains. To investigate how tau phosphorylation induces amyloid fibrils, here we report the atomic structures of two phospho-mimetic full-length tau fibrils assembled without anionic cofactors. One set of phospho-mimetic mutations is targeted by the antibody AT8, while the other set is targeted by the antibody PHF1. Solid-state NMR and cryo-electron microscopy data reveal that AT8 tau forms a unique triangular fibril core that encompasses the entire C-terminal third of the protein, whereas PHF1 tau forms a triple-stranded core. These results demonstrate that specific post-translational modifications induce structurally specific tau aggregates. We propose that these aggregates may evolve into pathological filaments under suitable cellular conditions or remain as transient species in normal brains.

biophysics↗

Sulfur limitation increases duckweed starch accumulation without compromising growth

Duckweeds contain relatively high levels of starch and are a potential biomass feedstock for biofuel production. Here, the biomass and starch yield of duckweed under three different nutrient-limited conditions were analyzed to investigate possible ways of further increasing the efficiency of starch production. The results showed that sulfur limitation resulted in the highest starch yield, which was 42% and 73% higher than in nitrogen or phosphorus limitation, respectively. The high yield of sulfur-limited duckweed is largely due to the combinations of little effects on biomass and high accumulations of starch. Although nitrogen limitation led to higher starch content (67.4%), it severely reduced biomass production. The photosynthetic performance indicator Fv/Fm was a simple and sensitive indicator of starch content in nutrient-limited duckweed. Taken together, this study demonstrates that sulfur limitation is a simple and efficient way to increase starch yield, highlighting the great potential of duckweed for biofuel production. We report that sulfur limitation is a practical approach to increase starch yields in duckweed without affecting growth or biomass. HighlightsO_LISulfur limitation induces starch production in a duckweed specie. C_LIO_LINitrogen limitation triggers the highest starch content, but limits growth. C_LIO_LISulfur limitation results in the highest starch yield. C_LIO_LIFv/Fm is a rapid and robust proxy of starch content in nutrient-limited duckweed. C_LI

plant biology↗