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Celastrol analogues as inducers of the heat shock response. Design and synthesis of affinity probes for the identification of protein targets

机译:Celastrol类似物作为热休克反应的诱导剂。设计和合成用于蛋白质靶标鉴定的亲和探针

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摘要

The natural product celastrol (1) possesses numerous beneficial therapeutic properties and affects numerous cellular pathways. The mechanism of action and cellular target(s) of celastrol, however, remain unresolved. While a number of studies have proposed that the activity of celastrol is mediated through reaction with cysteine residues, these observations have been based on studies with specific proteins or by in vitro analysis of a small fraction of the proteome. In this study, we have investigated the spatial and structural requirements of celastrol for the design of suitable affinity probes to identify cellular binding partners of celastrol. Although celastrol has several potential sites for modification, some of these were not synthetically amenable or yielded unstable analogues. Conversion of the carboxylic acid functionality to amides and long-chain analogues, however, yielded bioactive compounds that induced the heat shock response (HSR) and antioxidant response and inhibited Hsp90 activity. This led to the synthesis of biotinylated celastrols (23 and 24) that were used as affinity reagents in extracts of human Panc-1 cells to identify Annexin II, eEF1A, and β-tubulin as potential targets of celastrol.
机译:天然产物Celastrol(1)具有许多有益的治疗特性,并影响许多细胞途径。然而,尚无作用机理和celastrol的细胞靶标。尽管许多研究提出,通过与半胱氨酸残基反应来介导Celastrol的活性,但这些观察结果是基于对特定蛋白质的研究或对一小部分蛋白质组的体外分析。在这项研究中,我们调查了天青星的空间和结构要求,以设计合适的亲和力探针来鉴定天青星的细胞结合伴侣。尽管Celastrol具有几个潜在的修饰位点,但其中一些位点在合成上不适合或产生不稳定的类似物。但是,将羧酸官能团转化为酰胺和长链类似物会产生生物活性化合物,该化合物诱导热休克反应(HSR)和抗氧化剂反应并抑制Hsp90活性。这导致合成了生物素化的Celastrols(23和24),用作人类Panc-1细胞提取物中的亲和试剂,以鉴定Annexin II,eEF1A和β-微管蛋白作为Celastrol的潜在靶标。

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