首页> 外文期刊>The Biochemical Journal >Histone H4-based peptoids are inhibitors of protein arginine methyltransferase 1 (PRMT1)
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Histone H4-based peptoids are inhibitors of protein arginine methyltransferase 1 (PRMT1)

机译:基于组蛋白H4的拟肽是蛋白质精氨酸甲基转移酶1的抑制剂(PRMT1)

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Methylation of arginine residues occurs on a number of protein substrates, most notably the N-terminal tails of histones, and is catalyzed by a family of enzymes called the protein arginine methyltransferases (PRMTs). This modification can lead to transcriptional activation or repression of cancer-related genes. To date, a number of inhibitors, based on natural peptide substrates, have been developed for the PRMT family of enzymes. However, because peptides are easily degraded in vivo, the utility of these inhibitors as potential therapeutics is limited. The use of peptoids, which are peptide mimetics where the amino acid side chain is attached to the nitrogen in the amide backbone instead of the a-carbon, may circumvent the problems associated with peptide degradation. Given the structural similarities, peptoid scaffolds may provide enhanced stability, while preserving the mechanism of action. Herein, we have identified that peptoids based on natural peptide substrates are not catalyzed to the product by PRMT1, but instead are inhibitors of this enzyme. Reducing the length of the peptoid reduces inhibition and suggest the residues distal from the site of modification are important for binding. Furthermore, a positive charge on the N-terminus helps promote binding and improves inhibition. Selectivity among family members is likely possible based on inhibition being moderately selective for PRMT1 over PRMT5 and provides a scaffold that can be used to develop pharmaceuticals against this class of enzymes.
机译:精氨酸残基的甲基化发生在许多蛋白质底物上,最值得注于组蛋白的N-末端尾部,并被称为蛋白质精氨酸甲基转移酶(PRMTS)的酶系列催化。这种改性可导致转录激活或抑制癌症相关基因。迄今为止,已经为PRMT酶系列开发了许多基于天然肽基材的抑制剂。然而,由于肽在体内容易降解,因此这些抑制剂作为潜在治疗剂的效用是有限的。利用类肽,其是其中氨基酸侧链连接到酰胺骨架,而不是α-碳的氮肽模拟物,可以规避与肽降解相关的问题。鉴于结构相似之处,拟肽支架可以提供增强的稳定性,同时保留作用机制。在此,我们已经鉴定了基于天然肽基材的拟肽不通过PRMT1催化至产物,而是抑制该酶的抑制剂。减少拟肽的长度减少抑制并表明来自改性位点的残留物对结合是重要的。此外,N-末端的正电荷有助于促进结合并改善抑制。基于PRMT1的抑制,家庭成员之间的选择性可能是适度选择于PRMT5的抑制,并且提供可用于开发针对这类酶的药物的支架。

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