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生物素化肌醇六磷酸的合成用于研究DNA双链断裂修复及IP6结合蛋白的亲和捕获

Synthesis of Biotinylated Inositol Hexakisphosphate To Study DNA Double-Strand Break Repair and Affinity Capture of IP6-Binding Proteins.

作者信息

Jiao Chensong, Summerlin Matthew, Bruzik Karol S, Hanakahi Leslyn

机构信息

Department of Medicinal Chemistry and Pharmacognosy, College of Pharmacy, University of Illinois, Chicago , 833 South Wood Street (M/C 781), Chicago, Illinois 60612, United States.

Department of Medicinal Chemistry and Pharmacognosy, College of Pharmacy, University of Illinois, Chicago , Rockford Health Sciences Campus, 1601 Parkview Avenue, Rockford, Illinois 61107, United States.

出版信息

Biochemistry. 2015 Oct 20;54(41):6312-22. doi: 10.1021/acs.biochem.5b00642. Epub 2015 Oct 7.

Abstract

Inositol hexakisphosphate (IP6) is a soluble inositol polyphosphate, which is abundant in mammalian cells. Despite the participation of IP6 in critical cellular functions, few IP6-binding proteins have been characterized. We report on the synthesis, characterization, and application of biotin-labeled IP6 (IP6-biotin), which has biotin attached at position 2 of the myo-inositol ring via an aminohexyl linker. Like natural IP6, IP6-biotin stimulated DNA ligation by nonhomologous end joining (NHEJ) in vitro. The Ku protein is a required NHEJ factor that has been shown to bind IP6. We found that IP6-biotin could affinity capture Ku and other required NHEJ factors from human cell extracts, including the DNA-dependent protein kinase catalytic subunit (DNA-PKcs), XRCC4, and XLF. Direct binding studies with recombinant proteins show that Ku is the only NHEJ factor with affinity for IP6-biotin. DNA-PKcs, XLF, and the XRCC4:ligase IV complex interact with Ku in cell extracts and likely interact indirectly with IP6-biotin. IP6-biotin was used to tether streptavidin to Ku, which inhibited NHEJ in vitro. These proof-of-concept experiments suggest that molecules like IP6-biotin might be used to molecularly target biologically important proteins that bind IP6. IP6-biotin affinity capture experiments show that numerous proteins specifically bind IP6-biotin, including casein kinase 2, which is known to bind IP6, and nucleolin. Protein binding to IP6-biotin is selective, as IP3, IP4, and IP5 did not compete for binding of proteins to IP6-biotin. Our results document IP6-biotin as a useful tool for investigating the role of IP6 in biological systems.

摘要

肌醇六磷酸(IP6)是一种可溶性肌醇多磷酸,在哺乳动物细胞中含量丰富。尽管IP6参与关键的细胞功能,但已鉴定的IP6结合蛋白却很少。我们报道了生物素标记的IP6(IP6-生物素)的合成、表征及应用,其通过氨基己基连接子在肌醇环的2位连接了生物素。与天然IP6一样,IP6-生物素在体外通过非同源末端连接(NHEJ)刺激DNA连接。Ku蛋白是一种必需的NHEJ因子,已证明其能结合IP6。我们发现IP6-生物素可以从人细胞提取物中亲和捕获Ku及其他必需的NHEJ因子,包括DNA依赖性蛋白激酶催化亚基(DNA-PKcs)、XRCC4和XLF。与重组蛋白的直接结合研究表明,Ku是唯一对IP6-生物素有亲和力的NHEJ因子。DNA-PKcs、XLF以及XRCC4:连接酶IV复合物在细胞提取物中与Ku相互作用,并且可能间接与IP6-生物素相互作用。IP6-生物素用于将链霉亲和素拴系到Ku上,从而在体外抑制NHEJ。这些概念验证实验表明,像IP6-生物素这样的分子可能用于分子靶向与IP6结合的生物学重要蛋白。IP6-生物素亲和捕获实验表明,许多蛋白特异性结合IP6-生物素,包括已知能结合IP6的酪蛋白激酶2和核仁素。蛋白与IP6-生物素的结合具有选择性,因为IP3、IP4和IP5不会竞争蛋白与IP6-生物素的结合。我们的结果证明IP6-生物素是研究IP6在生物系统中作用的有用工具。

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