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20S蛋白酶体对支链氨基酸偏好性肽酶活性的动力学研究:连续测定法的开发以及三肽醛和裂环乳杆菌素β-内酯的抑制作用

Kinetic studies of the branched chain amino acid preferring peptidase activity of the 20S proteasome: development of a continuous assay and inhibition by tripeptide aldehydes and clasto-lactacystin beta-lactone.

作者信息

McCormack T A, Cruikshank A A, Grenier L, Melandri F D, Nunes S L, Plamondon L, Stein R L, Dick L R

机构信息

ProScript, Inc., Cambridge, Massachusetts 02139, USA.

出版信息

Biochemistry. 1998 May 26;37(21):7792-800. doi: 10.1021/bi980097q.

Abstract

We have developed an assay to continuously monitor the branched amino acid preferring peptidase (BrAAP) activity of the proteasome. This assay is based on the hydrolysis of the fluorogenic peptide, Abz-Gly-Pro-Ala-Leu-Ala-Nba (Abz is 2-aminobenzoyl and Nba is 4-nitrobenzylamide) which is cleaved exclusively at the Leu-Ala bond by the 20S proteasome with a kc/Km value of 13 000 M-1 s-1. Hydrolysis of this peptide is accompanied by an increase in fluorescence intensity (lambda ex = 340 nm, lambda em = 415 nm) due to release of the internally quenched 2-aminobenzoyl fluorescence that accompanies diffusion apart of the hydrolysis products, Abz-Gly-Pro-Ala-Leu and Ala-Nba. Using this assay, we examined inhibition of the BrAAP activity of the proteasome by a series of tripeptide aldehydes, Z-Leu-Leu-Xaa-H. When Xaa = Phe, (p-Cl)Phe, and Trp we observe biphasic or partial inhibition of the BrAAP activity. In contrast, when Xaa = Nva and Leu, simple inhibition kinetics are observed and allow us to calculate Ki values of 120 nM and 12 nM, respectively. The inhibitors that exhibit simple inhibition kinetics for BrAAP activity are also approximately equipotent for inhibition of the chymotrypsin-like (ChT-L) and peptidyl-glutamyl peptide hydrolyzing (PGPH) activities, dissociation constants varying by less than 25-fold, whereas the inhibitors that exhibit biphasic inhibition kinetics for BrAAP activity are >300-fold more potent for inhibiting ChT-L activity than for PGPH activity. Inactivation of the BrAAP activity of the proteasome by clasto-lactacystin beta-lactone is also biphasic. beta-Lactone inactivates approximately 60% of the BrAAP activity rapidly, with kinetics indistinguishable from its inactivation of the chymotrypsin-like activity. The remaining 40% of the BrAAP activity is inactivated by beta-lactone at a 50-fold slower rate, with kinetics indistinguishable from its inactivation of the PGPH activity. These results suggest a mechanism in which hydrolysis of Abz-Gly-Pro-Ala-Leu-Ala-Nba (i.e., BrAAP activity) occurs at two different active sites in the 20S proteasome, and that these two active sites are the same ones that catalyze the previously described ChT-L and PGPH activities.

摘要

我们开发了一种用于连续监测蛋白酶体中支链氨基酸偏好肽酶(BrAAP)活性的检测方法。该检测方法基于荧光肽Abz-Gly-Pro-Ala-Leu-Ala-Nba(Abz为2-氨基苯甲酰基,Nba为4-硝基苄酰胺)的水解,20S蛋白酶体仅在Leu-Ala键处切割该肽,其kc/Km值为13000 M-1 s-1。由于内部淬灭的2-氨基苯甲酰基荧光的释放,该肽的水解伴随着荧光强度的增加(激发波长λex = 340 nm,发射波长λem = 415 nm),这伴随着水解产物Abz-Gly-Pro-Ala-Leu和Ala-Nba的扩散分离。使用该检测方法,我们研究了一系列三肽醛Z-Leu-Leu-Xaa-H对蛋白酶体BrAAP活性的抑制作用。当Xaa = Phe、(p-Cl)Phe和Trp时,我们观察到BrAAP活性的双相或部分抑制。相反,当Xaa = Nva和Leu时,观察到简单的抑制动力学,并且我们能够分别计算出Ki值为120 nM和12 nM。对BrAAP活性表现出简单抑制动力学的抑制剂对胰凝乳蛋白酶样(ChT-L)和肽基-谷氨酰肽水解(PGPH)活性的抑制作用也大致等效,解离常数的变化小于25倍,而对BrAAP活性表现出双相抑制动力学的抑制剂对ChT-L活性的抑制作用比对PGPH活性的抑制作用强>300倍。clasto-乳胞素β-内酯对蛋白酶体BrAAP活性的失活也是双相的。β-内酯迅速使约60%的BrAAP活性失活,其动力学与它对胰凝乳蛋白酶样活性的失活无法区分。其余40%的BrAAP活性被β-内酯以慢50倍的速率失活,其动力学与它对PGPH活性的失活无法区分。这些结果表明一种机制,其中Abz-Gly-Pro-Ala-Leu-Ala-Nba的水解(即BrAAP活性)发生在20S蛋白酶体的两个不同活性位点,并且这两个活性位点与催化先前描述的ChT-L和PGPH活性的位点相同。

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