Rapid iPSC inclusionopathy models shed light on formation, consequence, and molecular subtype of α-synuclein inclusions

快速诱导多能干细胞包涵体病模型揭示了α-突触核蛋白包涵体的形成、后果和分子亚型

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作者:Isabel Lam ,Alain Ndayisaba ,Amanda J Lewis ,YuHong Fu ,Giselle T Sagredo ,Anastasia Kuzkina ,Ludovica Zaccagnini ,Meral Celikag ,Jackson Sandoe ,Ricardo L Sanz ,Aazam Vahdatshoar ,Timothy D Martin ,Nader Morshed ,Toru Ichihashi ,Arati Tripathi ,Nagendran Ramalingam ,Charlotte Oettgen-Suazo ,Theresa Bartels ,Manel Boussouf ,Max Schäbinger ,Erinc Hallacli ,Xin Jiang ,Amrita Verma ,Challana Tea ,Zichen Wang ,Hiroyuki Hakozaki ,Xiao Yu ,Kelly Hyles ,Chansaem Park ,Xinyuan Wang ,Thorold W Theunissen ,Haoyi Wang ,Rudolf Jaenisch ,Susan Lindquist ,Beth Stevens ,Nadia Stefanova ,Gregor Wenning ,Wilma D J van de Berg ,Kelvin C Luk ,Rosario Sanchez-Pernaute ,Juan Carlos Gómez-Esteban ,Daniel Felsky ,Yasujiro Kiyota ,Nidhi Sahni ,S Stephen Yi ,Chee Yeun Chung ,Henning Stahlberg ,Isidro Ferrer ,Johannes Schöneberg ,Stephen J Elledge ,Ulf Dettmer ,Glenda M Halliday ,Tim Bartels ,Vikram Khurana

Abstract

The heterogeneity of protein-rich inclusions and its significance in neurodegeneration is poorly understood. Standard patient-derived iPSC models develop inclusions neither reproducibly nor in a reasonable time frame. Here, we developed screenable iPSC "inclusionopathy" models utilizing piggyBac or targeted transgenes to rapidly induce CNS cells that express aggregation-prone proteins at brain-like levels. Inclusions and their effects on cell survival were trackable at single-inclusion resolution. Exemplar cortical neuron α-synuclein inclusionopathy models were engineered through transgenic expression of α-synuclein mutant forms or exogenous seeding with fibrils. We identified multiple inclusion classes, including neuroprotective p62-positive inclusions versus dynamic and neurotoxic lipid-rich inclusions, both identified in patient brains. Fusion events between these inclusion subtypes altered neuronal survival. Proteome-scale α-synuclein genetic- and physical-interaction screens pinpointed candidate RNA-processing and actin-cytoskeleton-modulator proteins like RhoA whose sequestration into inclusions could enhance toxicity. These tractable CNS models should prove useful in functional genomic analysis and drug development for proteinopathies.

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