Department of Biochemistry, Albert Einstein College of Medicine, Bronx, New York 10461, USA.
J Am Chem Soc. 2010 Feb 10;132(5):1578-82. doi: 10.1021/ja907226n.
The proteasome, a multicatalytic protease, displays distinct chymotrypsin-like, caspase-like, and trypsin-like activities at three different subunits of the multimeric complex. Fluorescent substrates for each of these active sites have been described. However, since the fluorescent properties of these substrates are very similar, it is not possible to simultaneously monitor catalysis of two or more activities. We have developed a long wavelength (lambda(ex) = 600 nm, lambda(em) = 700 nm) fluorescent substrate for the chymotrypsin-like active site via a combinatorial library strategy. This peptide-based substrate is a highly selective proteasomal chymotrypsin-like sensor, as assessed by a series of proteasomal active site mutants in yeast cell lysates. A corresponding caged analog of the sensor has been prepared, which is resistant to proteolysis until activated by 349 nm light. The latter affords the opportunity to assess proteasomal activity with a high degree of temporal control. The distinct photophysical properties of the sensor allow the chymotrypsin-like activity to be simultaneously monitored during caspase-like or trypsin-like catalysis. We have found that chymotrypsin-like activity is enhanced in the presence of the trypsin-like substrate but reduced in the presence of caspase-like substrate. Furthermore, the chymotrypsin-like sensor hinders the activity of both the caspase- and trypsin-like active sites. Coincident monitoring of two catalytic active sites furnishes two-thirds coverage of total proteasomal activity, which should provide the means to address if and how the distinct active sites of the proteasome influence one another during catalysis.
蛋白酶体是一种多催化蛋白酶,在多聚体复合物的三个不同亚基上显示出明显的糜蛋白酶样、半胱天冬酶样和胰蛋白酶样活性。已经描述了这些活性位点的荧光底物。然而,由于这些底物的荧光性质非常相似,因此不可能同时监测两种或更多种活性的催化作用。我们通过组合文库策略开发了一种用于糜蛋白酶样活性位点的长波长(lambda(ex) = 600nm,lambda(em) = 700nm)荧光底物。该肽基底物是一种高度选择性的蛋白酶体糜蛋白酶样传感器,如通过酵母细胞裂解物中的一系列蛋白酶体活性位点突变体进行评估。已经制备了相应的传感器的笼状类似物,该类似物在被 349nm 光激活之前对蛋白水解具有抗性。后者提供了在高度时间控制下评估蛋白酶体活性的机会。传感器的独特光物理性质允许在半胱天冬酶样或胰蛋白酶样催化过程中同时监测糜蛋白酶样活性。我们发现,在存在胰蛋白酶样底物的情况下,糜蛋白酶样活性增强,但在存在半胱天冬酶样底物的情况下则降低。此外,糜蛋白酶样传感器会阻碍半胱天冬酶样和胰蛋白酶样活性位点的活性。同时监测两个催化活性位点可提供蛋白酶体总活性的三分之二的覆盖范围,这应该提供一种手段来确定蛋白酶体的不同活性位点在催化过程中是否以及如何相互影响。