Nazif T, Bogyo M
Department of Biochemistry and Biophysics, University of California, San Francisco, CA 94143, USA.
Proc Natl Acad Sci U S A. 2001 Mar 13;98(6):2967-72. doi: 10.1073/pnas.061028898.
The proteasome is a large protease complex consisting of multiple catalytic subunits that function simultaneously to digest protein substrates. This complexity has made deciphering the role each subunit plays in the generation of specific protein fragments difficult. Positional scanning libraries of peptide vinyl sulfones were generated in which the amino acid located directly at the site of hydrolysis (P1 residue) was held constant and sequences distal to that residue (P2, P3, and P4 positions) were varied across all natural amino acids (except cysteine and methionine). Binding information for each of the individual catalytic subunits was obtained for each library under a variety of different conditions. The resulting specificity profiles indicated that substrate positions distal to P1 are critical for directing substrates to active subunits in the complex. Furthermore, specificity profiles of IFN-gamma-regulated subunits closely matched those of their noninducible counterparts, suggesting that subunit swapping may modulate substrate processing by a mechanism that does require a change in the primary sequence specificity of individual catalytic subunits in the complex. Finally, specificity profiles were used to design specific inhibitors of a single active site in the complex. These reagents can be used to further establish the role of each subunit in substrate processing by the proteasome.
蛋白酶体是一种大型蛋白酶复合体,由多个催化亚基组成,这些亚基同时发挥作用以消化蛋白质底物。这种复杂性使得难以解读每个亚基在特定蛋白质片段生成中所起的作用。生成了肽乙烯砜的位置扫描文库,其中直接位于水解位点(P1残基)的氨基酸保持不变,而该残基远端的序列(P2、P3和P4位置)在所有天然氨基酸(半胱氨酸和甲硫氨酸除外)中变化。在各种不同条件下,针对每个文库获得了各个催化亚基的结合信息。所得的特异性图谱表明,P1远端的底物位置对于将底物导向复合体中的活性亚基至关重要。此外,干扰素-γ调节亚基的特异性图谱与其非诱导对应物的特异性图谱紧密匹配,这表明亚基交换可能通过一种并不需要复合体中单个催化亚基一级序列特异性发生改变的机制来调节底物加工。最后,利用特异性图谱设计了复合体中单个活性位点的特异性抑制剂。这些试剂可用于进一步确定每个亚基在蛋白酶体底物加工中的作用。