Midkine Attenuates Aβ Fibril Assembly and Amyloid Plaque Formation.

Midkine 可减弱 Aβ 原纤维组装和淀粉样斑块形成

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作者:Zaman Masihuz, Yang Shu, Huang Ya, Yarbro Jay M, Hao Yanhong, Wang Zhen, Liu Danting, Harper Kiara E, Soliman Hadeer, Hemphill Alex, Harvey Sarah, Pruett-Miller Shondra M, Stewart Valerie, Tanwar Ajay Singh, Kalathur Ravi, Grace Christy R, Turk Martin, Chittori Sagar, Jiao Yun, Wu Zhiping, High Anthony A, Wang Xusheng, Serrano Geidy E, Beach Thomas G, Yu Gang, Yang Yang, Chen Ping-Chung, Peng Junmin
Proteomic profiling of Alzheimer's disease (AD) brains has identified numerous understudied proteins, including midkine (MDK), that are highly upregulated and correlated with Aβ since the early disease stage, but their roles in disease progression are not fully understood. Here we present that MDK attenuates Aβ assembly and influences amyloid formation in the 5xFAD amyloidosis mouse model. MDK protein mitigates fibril formation of both Aβ40 and Aβ42 peptides in Thioflavin T fluorescence assay, circular dichroism, negative stain electron microscopy, and NMR analysis. Knockout of Mdk gene in 5xFAD increases amyloid formation and microglial activation. Further comprehensive mass spectrometry-based profiling of whole proteome and detergent-insoluble proteome in these mouse models indicates significant accumulation of Aβ and Aβ-correlated proteins, along with microglial components. Thus, our structural and mouse model studies reveal a protective role of MDK in counteracting amyloid pathology in Alzheimer's disease.

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