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小鼠B淋巴细胞中磷脂酶C同工酶的表达

Expression of phospholipase C isozymes by murine B lymphocytes.

作者信息

Hempel W M, DeFranco A L

机构信息

Department of Microbiology and Immunology, University of California, San Francisco 94143.

出版信息

J Immunol. 1991 Jun 1;146(11):3713-20.

PMID:2033248
Abstract

Cross-linking of membrane (m) Ig, the B cell receptor for Ag, activates protein tyrosine phosphorylation and hydrolysis of phosphotidylinositol 4,5-bisphosphate. The latter signal transduction pathway is an important mediator of antigen receptor engagement. The initial event in this pathway is the activation of phospholipase C (PLC). The identity of the isozyme of PLC used in B cells and the mechanism by which it becomes activated are currently unknown. The cDNA encoding five different isozymes have been cloned. As a first step in identifying the isozyme of PLC that is coupled to mIgM, murine cDNA fragments for the five cloned PLC isozymes were generated by the polymerase chain reaction (PCR), cloned, and used to screen a panel of B cell lines representing different stages of development for PLC mRNA expression. All the B cell lines tested expressed high levels of PLC alpha and PLC gamma 2 mRNA, whereas PLC beta and PLC delta mRNA expression were undetectable by both Northern blot and PCR analysis. PLC gamma 1 had a more complicated pattern of mRNA expression. PLC gamma 1 mRNA expression was lower than that observed for PLC alpha or PLC gamma 2 mRNA and varied widely among different cell lines. The pattern of PLC gamma 1 mRNA expression did not correlate with the developmental stage of the cell lines. The pattern of PLC gamma 1 protein expression in the panel of B cell lines correlated with the pattern of PLC gamma 1 mRNA expression. PLC gamma 1 expression was very low in several B cell lines, despite the fact that these cell lines show mIgM-stimulatable PLC activity. The variable and in some cases very low expression of PLC gamma 1 suggests that it may not be the form of PLC that is activated by mIgM. In contrast, PLC alpha and PLC gamma 2 were abundantly expressed in all B cell lines tested. This observation is consistent with the possibility that PLC alpha or PLC gamma 2 is activated by mIgM.

摘要

膜(m)免疫球蛋白作为抗原的B细胞受体,其交联可激活蛋白酪氨酸磷酸化以及磷脂酰肌醇4,5 -二磷酸的水解。后一种信号转导途径是抗原受体结合的重要介质。该途径的起始事件是磷脂酶C(PLC)的激活。目前尚不清楚B细胞中所使用的PLC同工酶的身份及其被激活的机制。编码五种不同同工酶的cDNA已被克隆。作为鉴定与mIgM偶联的PLC同工酶的第一步,通过聚合酶链反应(PCR)生成了五种克隆的PLC同工酶的小鼠cDNA片段,进行克隆,并用于筛选一组代表不同发育阶段的B细胞系,以检测PLC mRNA的表达。所有测试的B细胞系均高水平表达PLCα和PLCγ2 mRNA,而通过Northern印迹和PCR分析均未检测到PLCβ和PLCδ mRNA的表达。PLCγ1的mRNA表达模式更为复杂。PLCγ1 mRNA的表达低于PLCα或PLCγ2 mRNA,并且在不同细胞系之间差异很大。PLCγ1 mRNA的表达模式与细胞系的发育阶段无关。在这组B细胞系中,PLCγ1蛋白的表达模式与PLCγ1 mRNA的表达模式相关。尽管这些细胞系显示出mIgM刺激的PLC活性,但在一些B细胞系中PLCγ1的表达非常低。PLCγ1表达的可变且在某些情况下非常低表明它可能不是被mIgM激活的PLC形式。相比之下,PLCα和PLCγ2在所有测试的B细胞系中均大量表达。这一观察结果与PLCα或PLCγ2被mIgM激活的可能性一致。

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