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用于检测C1木瓜蛋白酶家族半胱氨酸肽酶的新型含谷氨酰胺底物

New Glutamine-Containing Substrates for the Assay of Cysteine Peptidases From the C1 Papain Family.

作者信息

Filippova Irina Y, Dvoryakova Elena A, Sokolenko Nikolay I, Simonyan Tatiana R, Tereshchenkova Valeriia F, Zhiganov Nikita I, Dunaevsky Yakov E, Belozersky Mikhail A, Oppert Brenda, Elpidina Elena N

机构信息

Division of Natural Compounds, Department of Chemistry, Moscow State University, Moscow, Russia.

Department of Plant Proteins, A.N. Belozersky Institute of Physico-Chemical Biology, Moscow State University, Moscow, Russia.

出版信息

Front Mol Biosci. 2020 Oct 22;7:578758. doi: 10.3389/fmolb.2020.578758. eCollection 2020.

Abstract

New substrates with glutamine in the P1-position are introduced for the assay of peptidases from the C1 papain family, with a general formula of Glp-Phe-Gln-X, where Glp is pyroglutamyl and X is pNA (-nitroanilide) or AMC (4-amino-7-methylcoumaride). The substrates have a simple structure, and C1 cysteine peptidases of various origins cleave them with high efficiency. The main advantage of the substrates is their selectivity for cysteine peptidases of the C1 family. Peptidases of other clans, including serine trypsin-like peptidases, do not cleave glutamine-containing substrates. We demonstrate that using Glp-Phe-Gln-pNA in combination with a commercially available substrate, Z-Arg-Arg-pNA, provided differential determination of cathepsins L and B. In terms of specific activity and kinetic parameters, the proposed substrates offer improvement over the previously described alanine-containing prototypes. The efficiency and selectivity of the substrates was demonstrated by the example of chromatographic and electrophoretic analysis of a multi-enzyme digestive complex of stored product pests from the Tenebrionidae family.

摘要

引入了在P1位带有谷氨酰胺的新型底物,用于测定C1木瓜蛋白酶家族的肽酶,其通式为Glp-Phe-Gln-X,其中Glp是焦谷氨酰基,X是对硝基苯胺(pNA)或4-氨基-7-甲基香豆素(AMC)。这些底物结构简单,各种来源的C1半胱氨酸肽酶都能高效切割它们。这些底物的主要优点是对C1家族的半胱氨酸肽酶具有选择性。其他家族的肽酶,包括丝氨酸类胰蛋白酶样肽酶,不会切割含谷氨酰胺的底物。我们证明,将Glp-Phe-Gln-pNA与市售底物Z-Arg-Arg-pNA结合使用,能够对组织蛋白酶L和B进行差异测定。就比活性和动力学参数而言,所提出的底物比先前描述的含丙氨酸的原型有所改进。通过对拟步甲科仓储害虫多酶消化复合物的色谱和电泳分析实例,证明了这些底物的效率和选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af9b/7643032/e33f25982f7d/fmolb-07-578758-g001.jpg

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