Neuroscience Graduate Program, Brown University, Providence, RI, USA.
Biomedical Engineering Graduate Program, Brown University, Providence, RI, USA.
EMBO J. 2021 Feb 1;40(3):e105001. doi: 10.15252/embj.2020105001. Epub 2020 Dec 22.
mRNA transport in neurons requires formation of transport granules containing many protein components, and subsequent alterations in phosphorylation status can release transcripts for translation. Further, mutations in a structurally disordered domain of the transport granule protein hnRNPA2 increase its aggregation and cause hereditary proteinopathy of neurons, myocytes, and bone. We examine in vitro hnRNPA2 granule component phase separation, partitioning specificity, assembly/disassembly, and the link to neurodegeneration. Transport granule components hnRNPF and ch-TOG interact weakly with hnRNPA2 yet partition specifically into liquid phase droplets with the low complexity domain (LC) of hnRNPA2, but not FUS LC. In vitro hnRNPA2 tyrosine phosphorylation reduces hnRNPA2 phase separation, prevents partitioning of hnRNPF and ch-TOG into hnRNPA2 LC droplets, and decreases aggregation of hnRNPA2 disease variants. The expression of chimeric hnRNPA2 D290V in Caenorhabditis elegans results in stress-induced glutamatergic neurodegeneration; this neurodegeneration is rescued by loss of tdp-1, suggesting gain-of-function toxicity. The expression of Fyn, a tyrosine kinase that phosphorylates hnRNPA2, reduces neurodegeneration associated with chimeric hnRNPA2 D290V. These data suggest a model where phosphorylation alters LC interaction specificity, aggregation, and toxicity.
mRNA 在神经元中的运输需要形成包含许多蛋白质成分的运输颗粒,随后磷酸化状态的改变可以释放用于翻译的转录物。此外,运输颗粒蛋白 hnRNPA2 中结构无序域的突变会增加其聚集,并导致神经元、肌细胞和骨骼的遗传性蛋白病变。我们在体外检查 hnRNPA2 颗粒成分的相分离、分区特异性、组装/拆卸以及与神经退行性变的联系。运输颗粒成分 hnRNPF 和 ch-TOG 与 hnRNPA2 弱相互作用,但特异性地分配到 hnRNPA2 的低复杂度域(LC)液滴中,而不是 FUS LC。体外 hnRNPA2 酪氨酸磷酸化降低了 hnRNPA2 的相分离,阻止了 hnRNPF 和 ch-TOG 分配到 hnRNPA2 LC 液滴中,并减少了 hnRNPA2 疾病变体的聚集。在秀丽隐杆线虫中表达嵌合 hnRNPA2 D290V 会导致应激诱导的谷氨酸能神经退行性变;这一神经退行性变可以通过缺失 tdp-1 来挽救,这表明存在功能获得毒性。表达磷酸化 hnRNPA2 的酪氨酸激酶 Fyn 可减少与嵌合 hnRNPA2 D290V 相关的神经退行性变。这些数据表明,磷酸化改变了 LC 相互作用特异性、聚集和毒性的模型。