Kalek Marcin, Jemielity Jacek, Darzynkiewicz Zbigniew M, Bojarska Elzbieta, Stepinski Janusz, Stolarski Ryszard, Davis Richard E, Darzynkiewicz Edward
Department of Biophysics, Experimental Physics Institute, Warsaw University, Zwirki i Wigury 93, 02-089 Warsaw, Poland.
Bioorg Med Chem. 2006 May 1;14(9):3223-30. doi: 10.1016/j.bmc.2005.12.045. Epub 2006 Jan 23.
Four novel 5' mRNA cap analogs have been synthesized with one of the pyrophosphate bridge oxygen atoms of the triphosphate linkage replaced with a methylene group. The analogs were prepared via reaction of nucleoside phosphor/phosphon-1-imidazolidates with nucleoside phosphate/phosphonate in the presence of ZnCl2. Three of the new cap analogs are completely resistant to degradation by human DcpS, the enzyme responsible for hydrolysis of free cap resulting from 3' to 5' cellular mRNA decay. One of the new analogs has very high affinity for binding to human DcpS. Two of these analogs are Anti Reverse Cap Analogs which ensures that they are incorporated into mRNA chains exclusively in the correct orientation. These new cap analogs should be useful in a variety of biochemical studies, in the analysis of the cellular function of decapping enzymes, and as a basis for further development of modified cap analogs as potential anti-cancer and anti-parasite drugs.
已合成了四种新型的5' mRNA帽类似物,其中三磷酸连接的焦磷酸桥氧原子之一被亚甲基取代。这些类似物是通过核苷磷酰/膦酰-1-咪唑啉化物与核苷磷酸/膦酸酯在ZnCl2存在下反应制备的。三种新的帽类似物对人DcpS完全具有抗性,DcpS是负责水解由3'至5'细胞mRNA衰变产生的游离帽的酶。其中一种新类似物与人类DcpS结合具有非常高的亲和力。这些类似物中的两种是反式帽类似物,这确保它们仅以正确的方向掺入mRNA链中。这些新的帽类似物应可用于各种生化研究、去帽酶细胞功能分析,并作为进一步开发修饰帽类似物作为潜在抗癌和抗寄生虫药物的基础。