Zeidler R, Eissner G, Meissner P, Uebel S, Tampé R, Lazis S, Hammerschmidt W
GSF-National Research Center for Environment and Health, Institut für Klinische Molekularbiologie und Tumorgenetik, München, Germany.
Blood. 1997 Sep 15;90(6):2390-7.
Virally infected cells degrade intracellular viral proteins proteolytically and present the resulting peptides in association with major histocompatibility complex (MHC) class I molecules to CD8+ cytotoxic T lymphocytes (CTLs). These cells are normally prone to CTL-mediated elimination. However, several viruses have evolved strategies to avoid detection by the immune system that interfere with the pathway of antigen presentation. Epstein-Barr virus (EBV) expresses a predominantly late protein, the BCRF1 gene product vIL-10, that is similar in sequence to the human interleukin-10 (hIL-10). We show here that vIL-10 affects the expression of one of the two transporter proteins (TAPs) associated with antigen presentation. Similarly, hIL-10 showed the same activity. Expression of the LMP2 and TAP1 genes but not expression of TAP2 or LMP7 is efficiently downregulated, indicating a specific IL-10 effect on the two divergently transcribed TAP1 and LMP2 genes. Downregulation of TAP1 by IL-10 hampers the transport of peptide antigens into the endoplasmatic reticulum, as shown in the TAP-specific peptide transporter assay, their loading onto empty MHC I molecules, and the subsequent translocation to the cell surface. As a consequence, IL-10 causes a general reduction of surface MHC I molecules on B lymphocytes that might also affect the recognition of EBV-infected cells by cytotoxic T cells.
病毒感染的细胞通过蛋白水解作用降解细胞内的病毒蛋白,并将产生的肽与主要组织相容性复合体(MHC)I类分子结合,呈递给CD8 + 细胞毒性T淋巴细胞(CTL)。这些细胞通常易于被CTL介导清除。然而,几种病毒已经进化出避免被免疫系统检测到的策略,这些策略会干扰抗原呈递途径。爱泼斯坦 - 巴尔病毒(EBV)表达一种主要在晚期表达的蛋白,即BCRF1基因产物vIL - 10,其序列与人白细胞介素 - 10(hIL - 10)相似。我们在此表明,vIL - 10影响与抗原呈递相关的两种转运蛋白(TAPs)之一的表达。同样,hIL - 10也表现出相同的活性。LMP2和TAP1基因的表达被有效下调,但TAP2或LMP7的表达未受影响,这表明IL - 10对两个转录方向不同的TAP1和LMP2基因有特异性作用。如TAP特异性肽转运试验所示,IL - 10对TAP1的下调阻碍了肽抗原向内质网的转运、它们加载到空的MHC I分子上以及随后向细胞表面的转运。因此,IL - 10导致B淋巴细胞表面MHC I分子普遍减少,这也可能影响细胞毒性T细胞对EBV感染细胞的识别。