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CD4对丝氨酸碱基交换酶系统的调节作用:单克隆抗体、扁豆凝集素、白细胞介素16及HIV膜蛋白gp120的影响

Regulation of the serine-base exchange enzyme system by CD4: effects of monoclonal antibodies, jacalin, interleukin 16 and the HIV membrane protein gp120.

作者信息

Dumaurier M J, Pelassy C, Breittmayer J P, Aussel C

机构信息

INSERM U343, Hôpital de l'Archet, BP 79, 06202 Nice Cedex 03, France.

出版信息

Biochem J. 1998 Jan 1;329 ( Pt 1)(Pt 1):49-54. doi: 10.1042/bj3290049.

Abstract

Phosphatidylserine (PtdSer) is synthesized by an exchange of the polar head group of phospholipids for a serine residue. The enzyme responsible for this reaction, the serine-base exchange enzyme system (serine-BEES) is inhibited during lymphocyte activation. We show here that triggering the CD4 cell surface molecule in several CD4+ T-cell lines regulates the serine-BEES activity, thus resulting in marked changes in PtdSer synthesis. CD4 ligands able to generate an activating signal in T-cells such as the lectin jacalin, down-regulate the synthesis of PtdSer. In contrast, monoclonal antibodies (mAbs) directed against the CD4 molecule, such as IOT4 and IOT4a, which have previously been described as generating an inhibitory signal to T-cells, induced an up-regulation of the serine-BEES and impaired CD3-induced inhibition of PtdSer synthesis. Similarly, the HIV-gp120 envelope glycoprotein, in both soluble and cross-linked forms, induces an increase in PtdSer synthesis. The protein tyrosine kinase p56lck participates in the regulation of serine-BEES activity because the effect of CD4 mAbs was additive to that of amino-hydroxyflavone, an inhibitor of p56lck. Also, CD4 mAbs were inactive in J Cam 1.6 cells or when the CD3 signals were bypassed by using thapsigargin. These results demonstrate that the CD4 surface molecule can transmit both activating and inhibiting intracellular signals depending on the CD4 ligand used. We suggest that PtdSer synthesis would be one of the intracellular signals that could explain the opposite effects of different CD4 ligands on T-cells.

摘要

磷脂酰丝氨酸(PtdSer)是通过磷脂的极性头部基团与丝氨酸残基交换而合成的。负责此反应的酶,即丝氨酸碱基交换酶系统(serine - BEES)在淋巴细胞激活过程中受到抑制。我们在此表明,在几种CD4 + T细胞系中触发CD4细胞表面分子可调节丝氨酸 - BEES活性,从而导致PtdSer合成发生显著变化。能够在T细胞中产生激活信号的CD4配体,如凝集素jacalin,可下调PtdSer的合成。相反,针对CD4分子的单克隆抗体(mAb),如IOT4和IOT4a,先前已被描述为对T细胞产生抑制信号,可诱导丝氨酸 - BEES上调,并削弱CD3诱导的PtdSer合成抑制。同样,可溶性和交联形式的HIV - gp120包膜糖蛋白均可诱导PtdSer合成增加。蛋白酪氨酸激酶p56lck参与丝氨酸 - BEES活性的调节,因为CD4 mAb的作用与p56lck抑制剂氨基羟基黄酮的作用具有加和性。此外,CD4 mAb在J Cam 1.6细胞中无活性,或当使用毒胡萝卜素绕过CD3信号时也无活性。这些结果表明,CD4表面分子可根据所使用的CD4配体传递激活和抑制性细胞内信号。我们认为PtdSer合成可能是一种细胞内信号,可解释不同CD4配体对T细胞的相反作用。

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