CNRS, Institut des Maladies Neurodégénératives, UMR 5293, 33076 Bordeaux, France.
Institut des Maladies Neurodégénératives, UMR 5293, Université de Bordeaux, 33076 Bordeaux, France.
Biomolecules. 2022 Mar 24;12(4):494. doi: 10.3390/biom12040494.
In 1957, Lionel Penrose built the first man-made self-replicating mechanical device and illustrated its function in a series of machine prototypes, prefiguring our current view of the genesis and the proliferation of amyloid fibrils. He invented and demonstrated, with the help of his son Roger, the concepts that decades later, would become the fundamentals of prion and prion-like neurobiology: nucleation, seeding and conformational templating of monomers, linear polymer elongation, fragmentation, and spread. He published his premonitory discovery in a movie he publicly presented at only two conferences in 1958, a movie we thus reproduce here. By making a 30-year-jump in the early 90's, we evoke the studies performed by Peter Lansbury and his group in which α-Synuclein (α-Syn) was for the first time (i) compared to a prion; (ii) shown to contain a fibrillization-prone domain capable of seeding its own assembly into fibrils; (iii) identified as an intrinsically disordered protein (IDP), and which, in the early 2000s, (iv) was described by one of us as a protein chameleon. We use these temporally distant breakthroughs to propose that the combination of the chameleon nature of α-Syn with the rigid gear of the Penrose machine is sufficient to account for a phenomenon that is of current interest: the emergence and the spread of a variety of α-Syn fibril strains in α-Synucleinopathies.
1957 年,莱昂内尔·彭罗斯(Lionel Penrose)制造了第一个人造自我复制机械装置,并在一系列机器原型中展示了其功能,这预示着我们目前对淀粉样纤维原纤维的起源和扩散的看法。他在儿子罗杰(Roger)的帮助下发明并证明了几十年后成为朊病毒和类朊病毒神经生物学基础的概念:单体的成核、接种和构象模板化、线性聚合物伸长、断裂和传播。他在 1958 年仅在两个会议上公开放映的电影中公布了他的预警发现,我们在此重现了该电影。通过在 90 年代初提前 30 年,我们唤起了彼得·兰斯伯里(Peter Lansbury)及其团队进行的研究,在这些研究中,α-突触核蛋白(α-Syn)首次被:(i)与朊病毒进行比较;(ii)显示包含一个易于纤维形成的结构域,能够自身接种成纤维;(iii)被鉴定为一种固有无序蛋白(IDP),并在 21 世纪初,(iv)被我们中的一位描述为蛋白变色龙。我们利用这些时间上遥远的突破,提出α-Syn 的变色龙性质与彭罗斯机器的刚性齿轮相结合,足以解释当前关注的现象:在α-突触核蛋白病中各种α-Syn 纤维菌株的出现和传播。