Aki M, Shimbara N, Takashina M, Akiyama K, Kagawa S, Tamura T, Tanahashi N, Yoshimura T, Tanaka K, Ichihara A
Department of Urology, School of Medicine, University of Tokushima.
J Biochem. 1994 Feb;115(2):257-69. doi: 10.1093/oxfordjournals.jbchem.a124327.
To obtain information on the role of proteasomes in the immune system, we examined the effect of a major immunomodulatory cytokine, gamma interferon (IFN-gamma), on the expressions, structures, and functions of proteasomes. IFN-gamma greatly increased the levels of the mRNAs encoding LMP2 and LMP7, putative immuno-proteasome subunits encoded by genes within the class II MHC region, and these two subunits synthesized were assembled completely into the proteasomal multi-subunit complex in various types of human cells. The subunit organization of proteasome changed in response to IFN-gamma stimulation, due to assembly of newly synthesized subunits through up- and down-expressions of at least 6 proteasome genes including LMP2/LMP7 without change in the structure of pre-existing proteasomes. Interestingly, IFN-gamma dramatically stimulated the trypsin-like and chymotrypsin-like activities of the multifunctional proteasome and depressed the peptidylglutamyl-peptide-hydrolyzing activity, without affecting the activity for ATP-, ubiquitin-dependent proteolysis. These results indicate that IFN-gamma modifies not only the structural organization of the proteasome, but also its functions. Based on these findings, we discuss the role in the antigen processing/presentation pathway of proteasomes with functional diversity acquired through alteration of their subunit assembly in response to IFN-gamma stimulation.
为了获取蛋白酶体在免疫系统中的作用信息,我们研究了一种主要的免疫调节细胞因子γ干扰素(IFN-γ)对蛋白酶体的表达、结构和功能的影响。IFN-γ显著提高了编码LMP2和LMP7的mRNA水平,LMP2和LMP7是II类MHC区域内基因编码的假定免疫蛋白酶体亚基,在各类人类细胞中,这两种合成的亚基完全组装进蛋白酶体多亚基复合物中。蛋白酶体的亚基组成因IFN-γ刺激而改变,这是由于包括LMP2/LMP7在内的至少6种蛋白酶体基因的上调和下调表达导致新合成亚基的组装,而预先存在的蛋白酶体结构未发生变化。有趣的是,IFN-γ显著刺激了多功能蛋白酶体的胰蛋白酶样和糜蛋白酶样活性,并降低了肽基谷氨酰肽水解活性,而不影响ATP依赖的、泛素依赖性蛋白水解活性。这些结果表明,IFN-γ不仅改变了蛋白酶体的结构组成,还改变了其功能。基于这些发现,我们讨论了蛋白酶体在抗原加工/呈递途径中的作用,该途径通过响应IFN-γ刺激改变其亚基组装而获得功能多样性。