Carrizosa Esteban, Gomez Timothy S, Labno Christine M, Klos Dehring Deborah A, Liu Xiaohong, Freedman Bruce D, Billadeau Daniel D, Burkhardt Janis K
Department of Pathology and Laboratory Medicine, Children's Hospital of Philadelphia and University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.
J Immunol. 2009 Dec 1;183(11):7352-61. doi: 10.4049/jimmunol.0900973. Epub 2009 Nov 16.
Productive T cell activation requires efficient reorganization of the actin cytoskeleton. We showed previously that the actin-regulatory protein, hematopoietic lineage cell-specific protein 1 (HS1), is required for the stabilization of F-actin and Vav1 at the immunological synapse and for efficient calcium responses. The Tec family kinase IL-2-inducible T cell kinase (Itk) regulates similar aspects of T cell activation, suggesting that these proteins act in the same pathway. Using video microscopy, we show that T cells lacking Itk or HS1 exhibited similar defects in actin responses, extending unstable lamellipodial protrusions upon TCR stimulation. HS1 and Itk could be coimmunoprecipitated from T cell lysates, and GST-pulldown studies showed that Itk's Src homology 2 domain binds directly to two phosphotyrosines in HS1. In the absence of Itk, or in T cells overexpressing an Itk Src homology 2 domain mutant, HS1 failed to localize to the immunological synapse, indicating that Itk serves to recruit HS1 to sites of TCR engagement. Because Itk is required for phospholipase C (PLC)gamma1 phosphorylation and calcium store release, we examined the calcium signaling pathway in HS1(-/-) T cells in greater detail. In response to TCR engagement, T cells lacking HS1 exhibited diminished calcium store release, but TCR-dependent PLCgamma1 phosphorylation was intact, indicating that HS1's role in calcium signaling is distinct from that of Itk. HS1-deficient T cells exhibited defective cytoskeletal association of PLCgamma1 and altered formation of PLCgamma1 microclusters. We conclude that HS1 functions as an effector of Itk in the T cell actin-regulatory pathway, and directs the spatial organization of PLCgamma1 signaling complexes.
有效的T细胞活化需要肌动蛋白细胞骨架的高效重组。我们之前表明,肌动蛋白调节蛋白造血谱系细胞特异性蛋白1(HS1)对于免疫突触处F-肌动蛋白和Vav1的稳定以及有效的钙反应是必需的。Tec家族激酶白细胞介素-2诱导型T细胞激酶(Itk)调节T细胞活化的类似方面,表明这些蛋白在同一途径中起作用。使用视频显微镜,我们发现缺乏Itk或HS1的T细胞在肌动蛋白反应中表现出类似的缺陷,在TCR刺激时延伸不稳定的片状伪足突起。HS1和Itk可以从T细胞裂解物中共免疫沉淀,并且GST下拉研究表明Itk的Src同源2结构域直接结合HS1中的两个磷酸酪氨酸。在没有Itk的情况下,或在过表达Itk Src同源2结构域突变体的T细胞中,HS1未能定位于免疫突触,表明Itk用于将HS1募集到TCR结合位点。因为Itk是磷脂酶C(PLC)γ1磷酸化和钙库释放所必需的,我们更详细地研究了HS1(-/-)T细胞中的钙信号通路。响应TCR结合,缺乏HS1的T细胞表现出钙库释放减少,但TCR依赖性PLCγ1磷酸化是完整的,表明HS1在钙信号传导中的作用与Itk不同。HS1缺陷型T细胞表现出PLCγ1的细胞骨架结合缺陷和PLCγ1微簇形成改变。我们得出结论,HS1在T细胞肌动蛋白调节途径中作为Itk的效应器起作用,并指导PLCγ1信号复合物的空间组织。