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首页> 外文期刊>Journal of the Chemical Society, Perkin Transactions 1 >Design and preparation of serine-threonine protein phosphatase inhibitors based upon the nodularin and microcystin toxin structures. Part 30
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Design and preparation of serine-threonine protein phosphatase inhibitors based upon the nodularin and microcystin toxin structures. Part 30

机译:基于结节蛋白和微囊藻毒素的结构设计和制备丝氨酸-苏氨酸蛋白磷酸酶抑制剂。第30章

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摘要

Nodularin and microcystins are complex natural cyclic isopeptidic hepatotoxins that serve as subnanomolar inhibitors of the eukaryotic serine-threonine protein phosphatases PPl and PP2A, enzymes that are intimately involved in controlling cellular metabolism. Previously we described a solution-phase synthesis of stripped-down nodularin analogues; cyclo[-#beta#-Ala-(R)-Glu-#alpha#-OMe-#gamma#-Sar-(R)-Asp-#alpha#-OMe-#beta#-(S)-Phe-] 3 and cyclo[-(3R)-3-hydroxymethyl-#beta#-Ala-(R)-Glu-#alpha#-OMe-#gamma#-Sar-(R)-Asp-#alpha#-OMe-#beta#-(S)-Phe-] 5. The synthetic strategy was designed to allow post-macrocyclisation elaboration. Here we examine alternative methods for introducing diversity and achieving macrolactamisation and compare the relative efficiency of solution- vs. solid-phase peptide syntheses of the macrocycles. Syntheses and the biological activities of the macrocycles cyclo{-[(2R)-#alpha#-4-benzylpiperidinylamido-Asp]-#beta#-[(R)-Glu]-#gamma#-Sar-[(R)-Asp]-#beta#-(S)-Phe-} 29 and cyclo{-(2S)-Phe[(2S)-#alpha#-4-benzylpiperidinylamido-Asp]-(R)-Glu-#gamma#-(S)-Pro-#beta#-(R)-Asp-} 65 are compared. Both compounds contain sufficient side-chain functionality to interact with a hydrophobic groove at the enzyme active site. The proline containing analogues 30, 31 (R~3 = CH_3) where sarcosine is replaced in macrocycles 3 and 4, were also synthesized in order to correlate conformational properties with biological activity. In accord with predictions macrocycles 29 and 65 were found to be weak inhibitors of PPl with IC_50 2.9 and 2.7 mM respectively.
机译:结节霉素和微囊藻毒素是复杂的天然环状异肽肝毒素,它们充当真核丝氨酸-苏氨酸蛋白磷酸酶PP1和PP2A的亚纳摩尔抑制剂,这些酶密切参与控制细胞代谢。先前我们描述了剥离的结核菌类似物的溶液相合成。环[-#beta#-Ala-(R)-Glu-#alpha#-OMe-#gamma#-Sar-(R)-Asp-#alpha#-OMe-#beta#-(S)-Phe-] 3和环[-((3R)-3-羟甲基-#beta#-Ala-(R)-Glu-#alpha#-OMe-#gamma#-Sar-(R)-Asp-#alpha#-OMe-# beta#-(S)-Phe-] 5.合成策略旨在进行宏环化后的阐述。在这里,我们研究了引入多样性并实现大环内酰胺化的替代方法,并比较了大环化合物的固相和固相肽合成的相对效率。大环环{-[((2R)-#alpha#-4-苄基哌啶基酰胺基-Asp]-#beta#-[(R)-Glu]-#gamma#-Sar-[[R)- Asp]-#beta#-(S)-Phe-} 29和环{-(2S)-Phe [(2S)-#alpha#-4-苄基哌啶基酰胺基-Asp]-(R)-Glu-#gamma#-比较(S)-Pro-#beta#-(R)-Asp-} 65。两种化合物均具有足够的侧链官能度,可与酶活性位点的疏水性凹槽相互作用。还合成了含有类似物30、31(R〜3 = CH_3)的脯氨酸,其中大环3和4中的肌氨酸被取代,以使构象性质与生物学活性相关。与预测一致,发现大环29和65是PP1的弱抑制剂,IC_50分别为2.9和2.7mM。

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