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SUT-2 potentiates tau-induced neurotoxicity in Caenorhabditis elegans.

机译:SUT-2在秀丽隐杆线虫中增强tau诱导的神经毒性。

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摘要

Expression of human tau in Caenorhabditis elegans neurons causes accumulation of aggregated tau leading to neurodegeneration and uncoordinated movement. We used this model of human tauopathy disorders to screen for genes required for tau neurotoxicity. Recessive loss-of-function mutations in the sut-2 locus suppress the Unc phenotype, tau aggregation and neurodegenerative changes caused by human tau. We cloned the sut-2 gene and found it encodes a novel sub-type of CCCH zinc finger protein conserved across animal phyla. SUT-2 shares significant identity with the mammalian SUT-2 (MSUT-2). To identify SUT-2 interacting proteins, we conducted a yeast two hybrid screen and found SUT-2 binds to ZYG-12, the sole C. elegans HOOK protein family member. Likewise, SUT-2 binds ZYG-12 in in vitro protein binding assays. Furthermore, loss of ZYG-12 leads to a marked upregulation of SUT-2 protein supporting the connection between SUT-2 and ZYG-12. The human genome encodes three homologs of ZYG-12: HOOK1, HOOK2 and HOOK3. Of these, the human ortholog of SUT-2 (MSUT-2) binds only to HOOK2 suggesting the interaction between SUT-2 and HOOK family proteins is conserved across animal phyla. The identification of sut-2 as a gene required for tau neurotoxicity in C. elegans may suggest new neuroprotective strategies capable of arresting tau pathogenesis in tauopathy disorders.
机译:秀丽隐杆线虫神经元中人tau蛋白的表达引起tau蛋白聚集,导致神经变性和运动不协调。我们使用这种人类tauopathy障碍模型来筛选tau神经毒性所需的基因。 sut-2基因座中的隐性功能丧失突变可抑制人tau引起的Unc表型,tau聚集和神经退行性变化。我们克隆了sut-2基因,发现它编码一种跨动物门系保守的新型CCCH锌指蛋白亚型。 SUT-2与哺乳动物SUT-2(MSUT-2)具有重要的同一性。为了鉴定SUT-2相互作用蛋白,我们进行了两次酵母杂交筛选,发现SUT-2与唯一的秀丽隐杆线虫HOOK蛋白家族成员ZYG-12结合。同样,在体外蛋白结合测定中,SUT-2与ZYG-12结合。此外,ZYG-12的缺失会导致SUT-2蛋白的明显上调,从而支持SUT-2和ZYG-12之间的连接。人类基因组编码ZYG-12的三个同源物:HOOK1,HOOK2和HOOK3。其中,人类SUT-2直系同源物(MSUT-2)仅与HOOK2结合,这表明SUT-2与HOOK家族蛋白之间的相互作用在整个动物门系中都是保守的。将sut-2鉴定为秀丽隐杆线虫中tau神经毒性所需的基因可能表明,新的神经保护策略能够阻止tau病中tau的发病机理。

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