Porter Stephen B, Hildebrandt Emily R, Breevoort Sarah R, Mokry David Z, Dore Timothy M, Schmidt Walter K
Department of Biochemistry and Molecular Biology, The University of Georgia, 120 Green Street, Athens, GA 30602, USA.
Biochim Biophys Acta. 2007 Jun;1773(6):853-62. doi: 10.1016/j.bbamcr.2007.03.004. Epub 2007 Mar 20.
The CaaX proteases Rce1p and Ste24p can independently promote a proteolytic step required for the maturation of certain isoprenylated proteins. Although functionally related, Rce1p and Ste24p are unrelated in primary sequence. They have distinct enzymatic properties, which are reflected in part by their distinct inhibitor profiles. Moreover, Rce1p has an undefined catalytic mechanism, whereas Ste24p is an established zinc-dependent metalloprotease. This study demonstrates that both enzymes are inhibited by peptidyl (acyloxy)methyl ketones (AOMKs), making these compounds the first documented dual specificity inhibitors of the CaaX proteases. Further investigation of AOMK-mediated inhibition reveals that varying the peptidyl moiety can significantly alter the inhibitory properties of AOMKs toward Rce1p and Ste24p and that these enzymes display subtle differences in sensitivity to AOMKs. This observation suggests that this compound class could potentially be engineered to be selective for either of the CaaX proteases. We also demonstrate that the reported sensitivity of Rce1p to TPCK is substrate-dependent, which significantly alters the interpretation of certain reports having used TPCK sensitivity for mechanistic classification of Rce1p. Finally, we show that an AOMK inhibits the isoprenylcysteine carboxyl methyltransferase Ste14p. In sum, our observations raise important considerations regarding the specificity of agents targeting enzymes involved in the maturation of isoprenylated proteins, some of which are being developed as anti-cancer therapeutic agents.
CaaX蛋白酶Rce1p和Ste24p可独立促进某些异戊二烯化蛋白成熟所需的蛋白水解步骤。尽管Rce1p和Ste24p在功能上相关,但它们的一级序列并不相关。它们具有不同的酶学特性,这在一定程度上反映在它们不同的抑制剂谱上。此外,Rce1p具有尚未明确的催化机制,而Ste24p是一种已确定的锌依赖性金属蛋白酶。本研究表明,这两种酶均被肽基(酰氧基)甲基酮(AOMK)抑制,使这些化合物成为CaaX蛋白酶的首个有文献记载的双特异性抑制剂。对AOMK介导的抑制作用的进一步研究表明,改变肽基部分可显著改变AOMK对Rce1p和Ste24p的抑制特性,并且这些酶对AOMK的敏感性存在细微差异。这一观察结果表明,这类化合物有可能被设计成对任何一种CaaX蛋白酶具有选择性。我们还证明,报道的Rce1p对TPCK的敏感性是底物依赖性的,这显著改变了某些使用TPCK敏感性对Rce1p进行机制分类的报道的解释。最后,我们表明一种AOMK可抑制异戊二烯基半胱氨酸羧基甲基转移酶Ste14p。总之,我们的观察结果引发了关于靶向参与异戊二烯化蛋白成熟的酶的试剂特异性的重要考虑,其中一些试剂正在被开发为抗癌治疗药物。