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Shank3 oligomerization governs material properties of the postsynaptic density condensate and synaptic plasticity by Bowen Jia & Zeyu Shen & Shihan Zhu & Jingguo Huang & Zhitao Liao & Shuaizhu Zhao & Hao Li & Shiwen Chen & Yang Xu & Yu Wang & Haitang Peng & Guanhua Bai & Youming Lu & Penger Tong & Wucheng Tao & Mingjie Zhang instant download

  • SKU: EBN-238273458
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Instant download (eBook) Shank3 oligomerization governs material properties of the postsynaptic density condensate and synaptic plasticity after payment.
Authors:Bowen Jia & Zeyu Shen & Shihan Zhu & Jingguo Huang & Zhitao Liao & Shuaizhu Zhao & Hao Li & Shiwen Chen & Yang Xu & Yu Wang & Haitang Peng & Guanhua Bai & Youming Lu & Penger Tong & Wucheng Tao & Mingjie Zhang
Pages:updating ...
Year:2025
Publisher:x
Language:english
File Size:20.53 MB
Format:pdf
Categories: Ebooks

Product desciption

Shank3 oligomerization governs material properties of the postsynaptic density condensate and synaptic plasticity by Bowen Jia & Zeyu Shen & Shihan Zhu & Jingguo Huang & Zhitao Liao & Shuaizhu Zhao & Hao Li & Shiwen Chen & Yang Xu & Yu Wang & Haitang Peng & Guanhua Bai & Youming Lu & Penger Tong & Wucheng Tao & Mingjie Zhang instant download

Cell, Corrected proof. doi:10.1016/j.cell.2025.07.047

SUMMARYCells contain numerous types of membraneless organelles or biological condensates formed via phase separation. Cellular biological condensates have broad material properties ranging from Newtonian fluids toelastic solids. How the material property of a biological condensate is regulated for cellular functions is poorlyunderstood. Here, we discovered that, like native postsynaptic densities (PSDs), the reconstituted PSDcondensate forms a soft glass material without signs of irreversible amyloid structure formation. Suchglass-like PSD condensate formation is based on percolation of the PSD protein network via specific andmultivalent interactions among scaffold proteins. Disruption of Shank3 SAM domain-mediated oligomerization, one type of SHANK3 mutation observed in Phelan-McDermid syndrome patients, softened the PSDcondensate by weakening its network percolation, impaired synaptic transmission and plasticity, and causedautistic-like behavior in mice. Thus, our study suggests that the material properties of the PSD condensateare critical for learning and memory mediated by neuronal synapses.

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