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T细胞抗原受体通过肌醇磷脂途径发出的信号受受体数量限制。

Signaling via the inositol phospholipid pathway by T cell antigen receptor is limited by receptor number.

作者信息

Graber M, Bockenstedt L K, Weiss A

机构信息

Howard Hughes Medical Institute, Department of Medicine, University of California, San Francisco 94143.

出版信息

J Immunol. 1991 May 1;146(9):2935-43.

PMID:1826700
Abstract

Engagement of the TCR initiates at least two transmembrane signaling pathways, the phosphatidylinositol pathway and a tyrosine kinase pathway. The T cell leukemic line Jurkat was used to study the relationship between the number of occupied TCR on the cell surface and the TCR-mediated activation of phosphatidylinositol-specific phospholipase C. We characterized a series of Ti beta-chain transfectants of the Jurkat mutant J.RT3-T3.5, in which surface expression of the TCR is limited by expression of the TCR beta-chain. Calibrated flow cytometry was used to determine the number of binding sites for anti-CD3 mAb on the surface of these cells, which was less than 1.2 x 10(3) to 1.2 x 10(4) sites/cell. In the presence of lithium chloride, the accumulation of inositol phosphates (InsP) in these cell lines in response to saturating concentrations of anti-CD3 mAb was proportional to the calculated surface TCR number. This result was consistent with dose-response studies using anti-CD3 mAb in Jurkat cells, in which ligand concentration, rather than number of binding sites, was limiting. Increase in intracellular free calcium concentration was a sensitive indicator of TCR engagement and correlated with the level of TCR expression, but less closely than did InsP levels. Induction of the early lymphocyte activation marker CD69 by anti-CD3 mAb also correlated with surface expression of TCR. In order to test whether limitation of this signaling pathway by TCR number may be relevant to signal transduction in the wild-type cell, we compared PLC activity in Jurkat cells during soluble anti-CD3 mAb-induced internalization of the TCR and also in response to immobilized mAb. The net accumulation of InsP per min decreased linearly with TCR number during the rapid phase of TCR internalization, confirming the limiting role of TCR number in this system. When internalization was prevented by immobilization of the stimulus, there was no decrease in the net accumulation of InsP per minute over time. In a Jurkat cell line transfected with the heterologous human muscarinic receptor, subtype 1, the InsP response to a muscarinic agonist was unaffected by TCR internalization, indicating that the distal phosphatidylinositol pathway was not affected by prolonged stimulation of the TCR. We conclude that transmembrane signaling through the TCR may be regulated by the number of surface TCR-ligand complexes. This observation has implications for transmembrane signaling in both mature T cells and thymocytes.

摘要

TCR的激活至少启动两条跨膜信号通路,即磷脂酰肌醇通路和酪氨酸激酶通路。T细胞白血病细胞系Jurkat被用于研究细胞表面被占据的TCR数量与TCR介导的磷脂酰肌醇特异性磷脂酶C激活之间的关系。我们对Jurkat突变体J.RT3-T3.5的一系列Tiβ链转染子进行了表征,其中TCR的表面表达受TCRβ链表达的限制。使用校准的流式细胞术来确定这些细胞表面抗CD3单克隆抗体的结合位点数量,其小于1.2×10³至1.2×10⁴个位点/细胞。在存在氯化锂的情况下,这些细胞系中肌醇磷酸(InsP)在饱和浓度抗CD3单克隆抗体刺激下的积累与计算出的表面TCR数量成正比。该结果与在Jurkat细胞中使用抗CD3单克隆抗体进行的剂量反应研究一致,在该研究中,配体浓度而非结合位点数量是限制因素。细胞内游离钙浓度的增加是TCR激活的敏感指标,并且与TCR表达水平相关,但不如InsP水平密切相关。抗CD3单克隆抗体诱导早期淋巴细胞激活标志物CD69也与TCR的表面表达相关。为了测试TCR数量对该信号通路的限制是否可能与野生型细胞中的信号转导相关,我们比较了可溶性抗CD3单克隆抗体诱导TCR内化期间Jurkat细胞中的PLC活性,以及对固定化单克隆抗体的反应。在TCR内化的快速阶段,每分钟InsP的净积累随TCR数量呈线性下降,证实了TCR数量在该系统中的限制作用。当通过固定刺激物阻止内化时,每分钟InsP的净积累随时间没有下降。在转染了异源人毒蕈碱受体1型的Jurkat细胞系中,对毒蕈碱激动剂的InsP反应不受TCR内化的影响,表明远端磷脂酰肌醇通路不受TCR长期刺激的影响。我们得出结论,通过TCR的跨膜信号传导可能受表面TCR-配体复合物数量的调节。这一观察结果对成熟T细胞和胸腺细胞中的跨膜信号传导都有影响。

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