Verí M C, DeBell K E, Seminario M C, DiBaldassarre A, Reischl I, Rawat R, Graham L, Noviello C, Rellahan B L, Miscia S, Wange R L, Bonvini E
Laboratory of Immunobiology, Division of Monoclonal Antibodies, Center for Biologics Evaluation & Research, National Institute o f Health, Bethesda, Maryland 20892, USA.
Mol Cell Biol. 2001 Oct;21(20):6939-50. doi: 10.1128/MCB.21.20.6939-6950.2001.
Numerous signaling molecules associate with lipid rafts, either constitutively or after engagement of surface receptors. One such molecule, phospholipase Cgamma-1 (PLCgamma1), translocates from the cytosol to lipid rafts during T-cell receptor (TCR) signaling. To investigate the role played by lipid rafts in the activation of this molecule in T cells, an influenza virus hemagglutinin A (HA)-tagged PLCgamma1 was ectopically expressed in Jurkat T cells and targeted to these microdomains by the addition of a dual-acylation signal. Raft-targeted PLCgamma1 was constitutively tyrosine phosphorylated and induced constitutive NF-AT-dependent transcription and interleukin-2 secretion in Jurkat cells. Tyrosine phosphorylation of raft-targeted PLCgamma1 did not require Zap-70 or the interaction with the adapters Lat and Slp-76, molecules that are necessary for TCR signaling. In contrast, the Src family kinase Lck was required. Coexpression in HEK 293T cells of PLCgamma1-HA with Lck or the Tec family kinase Rlk resulted in preferential phosphorylation of raft-targeted PLCgamma1 over wild-type PLCgamma1. These data show that localization of PLCgamma1 in lipid rafts is sufficient for its activation and demonstrate a role for lipid rafts as microdomains that dynamically segregate and integrate PLCgamma1 with other signaling components.
许多信号分子与脂筏相关联,这种关联可以是组成性的,也可以是在表面受体被激活之后。磷脂酶Cγ-1(PLCγ1)就是这样一种分子,在T细胞受体(TCR)信号传导过程中,它从胞质溶胶转位至脂筏。为了研究脂筏在T细胞中该分子激活过程中所起的作用,一种带有流感病毒血凝素A(HA)标签的PLCγ1在Jurkat T细胞中异位表达,并通过添加双酰化信号使其靶向这些微结构域。靶向脂筏的PLCγ1持续发生酪氨酸磷酸化,并在Jurkat细胞中诱导持续的NF-AT依赖性转录和白细胞介素-2分泌。靶向脂筏的PLCγ1的酪氨酸磷酸化不需要Zap-70,也不需要与接头蛋白Lat和Slp-76相互作用,而这两种分子是TCR信号传导所必需的。相反,Src家族激酶Lck是必需的。在HEK 293T细胞中,PLCγ1-HA与Lck或Tec家族激酶Rlk共表达,导致靶向脂筏的PLCγ1比野生型PLCγ1优先磷酸化。这些数据表明,PLCγ1在脂筏中的定位足以使其激活,并证明脂筏作为微结构域,可动态分离并整合PLCγ1与其他信号成分。