Li X, Franklin C C, Kraft A S, Carter R H
Department of Medicine, University of Alabama at Birmingham 35294, U.S.A.
Mol Immunol. 1997 Apr;34(5):409-18. doi: 10.1016/s0161-5890(97)00035-7.
Stress-activated protein kinases (SAPK; also known as JNK for c-Jun N-terminal kinase) phosphorylate Ser63 and Ser73 in the amino-terminus of the c-Jun protein and potentiate its transcriptional activity. We have analysed phosphorylation of GST fusion proteins containing the c-Jun N-terminal domain by lysates of Daudi human B lymphoblastoid cells stimulated with medium or anti-IgM. Crosslinking membrane IgM (mIgM) results in an increase in phosphorylation of GST-c-Jun (5-89) in an antibody dose-dependent manner. The kinase activity specifically phosphorylates the c-Jun N-terminal domain since it does not phosphorylate GST or GST-JunB. The activity preferentially phosphorylates the substrate that contains the sites for in vivo phosphorylation by SAPK/JNK and requires the delta domain of c-Jun, which is also required for SAPK/JNK activity. However, the c-Jun N-terminal kinase activity induced by mIgM ligation is not precipitatable with anti-SAPK/JNK antibodies. In addition, unlike SAPK/JNKs, the mIgM-dependent c-Jun N-terminal kinase activity is not detectable in assays for renaturable kinase activity (in-gel assay) or in assays that test activities that bind to c-Jun (solid-phase assay). The increased phosphorylation of c-Jun N-terminal domain in response to mIgM ligation is unlikely to be due to mIgM-activated ERKs as it was not suppressed by a selective MEK inhibitor. Thus, the mIgM-induced activity is distinct from the known SAPK/JNKs and may represent a novel mechanism for c-Jun phosphorylation in response to mIgM engagement in human B cells.
应激激活蛋白激酶(SAPK;也称为c-Jun氨基末端激酶JNK)使c-Jun蛋白氨基末端的Ser63和Ser73磷酸化,并增强其转录活性。我们分析了用培养基或抗IgM刺激的Daudi人B淋巴母细胞裂解物对含c-Jun氨基末端结构域的GST融合蛋白的磷酸化作用。交联膜IgM(mIgM)导致GST-c-Jun(5-89)的磷酸化以抗体剂量依赖性方式增加。该激酶活性特异性地使c-Jun氨基末端结构域磷酸化,因为它不使GST或GST-JunB磷酸化。该活性优先使含有体内被SAPK/JNK磷酸化位点的底物磷酸化,并且需要c-Jun的δ结构域,这也是SAPK/JNK活性所必需的。然而,mIgM连接诱导的c-Jun氨基末端激酶活性不能用抗SAPK/JNK抗体沉淀。此外,与SAPK/JNK不同,在可复性激酶活性测定(凝胶内测定)或测试与c-Jun结合的活性测定(固相测定)中未检测到mIgM依赖性c-Jun氨基末端激酶活性。响应mIgM连接,c-Jun氨基末端结构域磷酸化增加不太可能是由于mIgM激活的ERK,因为它未被选择性MEK抑制剂抑制。因此,mIgM诱导的活性不同于已知的SAPK/JNK,可能代表了人B细胞中响应mIgM结合的c-Jun磷酸化的新机制。