Cameron C E, Ridky T W, Shulenin S, Leis J, Weber I T, Copeland T, Wlodawer A, Burstein H, Bizub-Bender D, Skalka A M
Case Western Reserve University School of Medicine, Cleveland, Ohio 44106-4935.
J Biol Chem. 1994 Apr 15;269(15):11170-7.
Mutations, designed by analysis of the crystal structures of Rous sarcoma virus (RSV) and human immunodeficiency virus type 1 (HIV-1) protease (PR), were introduced into the substrate binding pocket of RSV PR. The mutations substituted nonconserved residues of RSV PR, located within 10 A of the substrate, for those in structurally equivalent positions of HIV-1 PR. Changes in the activity of purified mutants were detected in vitro by following cleavage of synthetic peptides representing wild-type and modified RSV and HIV-1 gag and pol polyprotein cleavage sites. Substituting threonine for valine 104 (V104T), S107N, I44V, Q63M or deletion of residues 61-63 produced enzymes that were 2.5-7-fold more active than the wild type RSV PR. Substituting I42D, M73V, and A100L produced enzymes with lower activity, whereas a mutant that included both M73V and A100L was as active as wild type. Several substitutions altered the specificity for substrate. These include I42D and I44V, which contribute to the S2 and S2' subsites. These proteins exhibited HIV-1 PR specificity for P2- or P2'-modified peptide substrates but unchanged specificity with P4-, P3-, P1-, P1'-, and P3'-modified substrates. Changes in specificity in the S4 subsite were detected by deletion of residues 61-63. These results confirm the hypothesis that the subsites of the substrate binding pocket of the retroviral protease are capable of acting independently in the selection of substrate amino acids.
通过对劳氏肉瘤病毒(RSV)和1型人类免疫缺陷病毒(HIV-1)蛋白酶(PR)晶体结构的分析设计突变,将其引入RSV PR的底物结合口袋。这些突变用HIV-1 PR结构等效位置的残基取代了RSV PR位于底物10埃范围内的非保守残基。通过跟踪代表野生型和修饰型RSV以及HIV-1 gag和pol多蛋白切割位点的合成肽的切割,在体外检测纯化突变体活性的变化。用苏氨酸取代缬氨酸104(V104T)、S107N、I44V、Q63M或缺失残基61 - 63产生的酶,其活性比野生型RSV PR高2.5至7倍。用I42D、M73V和A100L取代产生的酶活性较低,而同时包含M73V和A100L的突变体与野生型活性相同。几个取代改变了对底物的特异性。其中包括I42D和I44V,它们对S2和S2'亚位点有贡献。这些蛋白质对P2或P2'修饰的肽底物表现出HIV-1 PR特异性,但对P4、P3、P1、P1'和P3'修饰的底物特异性不变。通过缺失残基61 - 63检测到S4亚位点特异性的变化。这些结果证实了以下假设:逆转录病毒蛋白酶底物结合口袋的亚位点在选择底物氨基酸时能够独立发挥作用。