首页> 外文期刊>Saudi Journal of Biological Sciences >Optimization of expression and purification of mitochondrial HSP 40 (Tid1-L) chaperone: Role of mortalin and tid1 in the reactivation and amyloid inhibition of proteins
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Optimization of expression and purification of mitochondrial HSP 40 (Tid1-L) chaperone: Role of mortalin and tid1 in the reactivation and amyloid inhibition of proteins

机译:优化线粒体HSP 40(TID1-L)伴侣的表达及纯化:凡人素和TID1在蛋白质重新激活和淀粉样蛋白抑制中的作用

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Stimulation of complex chaperone activity may be a viable means of therapy for neurodegenerative diseases. These chaperons execute reactivation of thermally and chemically aggregated protein substrates by cooperating with their partner co-chaperons. We optimized the expression and purification conditions of Tid1-L chaperone. Expression of Tid1-L in E. coli resulted in the formation of inclusion bodies which was further purified to soluble active form using 8?M urea and Ni-NTA column. Also, we investigated the events of the reactivation and disaggregation using aggregated G6PDH, luciferase and insulin as substrates. Incubation of aggregated/denatured enzymes with mortalin but not with Tid1 and/or Mge1 resulted in the initiation of the disaggregation reaction albeit very insignificantly. Under the same conditions coincubating the samples with chaperon and its assisted partners Tid1-L and nucleotide exchange factor Mge1 led to (40%) increase in enzyme activity of G6PDH. Similarly, luciferase activity was synergistically enhanced in the presence of mortlain/Tid1-L/Mge1 chaperones machinery. Chaperone-dependent disaggregation of thermally aggregated insulin showed that addition of Hsp70 and Hsp40 chaperones resulted in fast-track of renaissance reaction and inhibition of amyloid. The present study results conclude the quality of cell-control involves interaction of chaperon Hsp70 and its co-chaperones leading to complex formation with chemically/thermally aggregated substrate eventually causing its reactivation and disaggregation.
机译:复杂伴侣活性的刺激可能是神经变性疾病的可行治疗方法。这些伴侣通过与其伴侣共伴侣合作来执行热和化学聚集的蛋白质基质的再活化。我们优化了TID1-L伴侣的表达和纯化条件。在大肠杆菌中的TID1-L的表达导致形成夹杂物体,其进一步纯化以使用8·m脲和Ni-NTA柱可溶性活性形式。此外,我们使用聚集的G6PDH,荧光素酶和胰岛素作为基质来研究再活化和分解的事件。孵育具有凡人的聚集/变性酶,但不与TID1和/或MGE1一起导致虽然非常微不足道地引发分类反应。在将样品与伴侣的相同条件下,其辅助合作伙伴TID1-L和核苷酸交换因子MGE1导致(40%)G6PDH的酶活性增加。类似地,在抵押/ TID1-L / MGE1伴侣机械的存在下,荧光素酶活性在存在下协同增强。热聚集胰岛素的伴随伴随的胰岛素的分解表明,添加HSP70和Hsp40伴侣导致快速追踪的文艺复兴反应和淀粉样蛋白的抑制。本研究结果得出结论细胞控制的质量涉及伴侣HSP70的相互作用及其共伴侣,其导致复杂地层与化学/热聚合基材最终导致其再激活和分解。

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