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皮克病中tau蛋白聚集体的分子多态性

Molecular Polymorphism of tau aggregates in Pick's disease.

作者信息

Liu Jiliang, Stewart Theresa Connors, Hyman Bradley T, Burghammer Manfred, Cotte Marine, Makowski Lee

机构信息

European Synchrotron Radiation Facility, Grenoble 38043, France.

Department of Neurology, Massachusetts General Hospital, Charlestown, MA 02129, USA.

出版信息

bioRxiv. 2024 Nov 19:2024.11.19.624253. doi: 10.1101/2024.11.19.624253.

Abstract

Tau protein plays a central role in many neuropathies. The trajectory by which tau spreads through neural networks is disease-specific but the events driving progression are unknown. This is due in part to the challenge of characterizing tau aggregates . We address that challenge using micro-x-ray diffraction (µXRD) and micro-X-ray fluorescence (μXRF) to examine tau lesions in the brain of a 79-year-old male with dementia. Neuropathological examination revealed classical forms of tau in the hippocampal formation: extensive Pick bodies in the granular layer; modest numbers of neurofibrillary tangles and dystrophic neurites in the CA4 and hilus. µXRD indicated that Pick bodies are low in fibril content, whereas neurofibrillary lesions within adjacent tissue exhibit far greater density of fibrillar tau. μXRF demonstrated elevated levels of zinc, calcium and phosphorous in all tau-containing lesions whereas sulfur deposition was greatest in lesions exhibiting high fibrillar content. Correlation of lesion morphology with anatomical localization, tau fibrillation and differential elemental accumulation suggests tau fibrils generate biochemically distinct microenvironments that influence lesion morphology, tau seed formation and spreading.

摘要

tau蛋白在许多神经病变中起着核心作用。tau蛋白在神经网络中传播的轨迹因疾病而异,但驱动其进展的事件尚不清楚。部分原因在于表征tau聚集体具有挑战性。我们利用微X射线衍射(µXRD)和微X射线荧光(μXRF)来应对这一挑战,以检查一名79岁男性痴呆症患者大脑中的tau病变。神经病理学检查显示海马结构中存在典型形式的tau:颗粒层中有大量Pick小体;CA4区和海马 hilus中有少量神经原纤维缠结和营养不良性神经突。µXRD表明Pick小体的纤维含量较低,而相邻组织中的神经原纤维病变显示出更高密度的纤维状tau。μXRF显示所有含tau病变中锌、钙和磷的水平升高,而硫沉积在纤维含量高的病变中最为明显。病变形态与解剖定位、tau纤维化和元素积累差异之间的相关性表明,tau纤维产生了生物化学上不同的微环境,影响病变形态、tau种子形成和传播。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c257/11601565/d2ea046ce260/nihpp-2024.11.19.624253v1-f0001.jpg

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