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慢性淋巴细胞白血病B细胞中CD5的自然磷酸化以及对B细胞系中CD5调控基因的分析表明,CD5在恶性表型中发挥作用。

Natural phosphorylation of CD5 in chronic lymphocytic leukemia B cells and analysis of CD5-regulated genes in a B cell line suggest a role for CD5 in malignant phenotype.

作者信息

Gary-Gouy Hélène, Sainz-Perez Alexander, Marteau Jean-Brice, Marfaing-Koka Anne, Delic Jozo, Merle-Beral Hélène, Galanaud Pierre, Dalloul Ali

机构信息

Institut National de la Santé et de la Recherche Médicale U 764, Université Paris XI, Laboratoire d'Hématologie, Service de Médecine Interne-Immunologie, Hôpital Antoine Beclère, Clamart, France.

出版信息

J Immunol. 2007 Oct 1;179(7):4335-44. doi: 10.4049/jimmunol.179.7.4335.

Abstract

Chronic lymphocytic leukemia (CLL) results in the accumulation of B cells, presumably reflecting the selection of malignant cell precursors with Ag combined with complex alterations in protein activity. Repeated BCR stimulation of normal B cells leads to anergy and CD5 expression, both of which are features of CLL. Because CD5 is phosphorylated on tyrosine following BCR engagement and negatively regulates BCR signaling in normal B cells, we investigated its phosphorylation status and found it to be naturally phosphorylated on tyrosine but not on serine residues in CLL samples. To analyze the role of CD5, we established a B cell line in which CD5 is phosphorylated. Gene profiling of vector vs CD5-transfected B cells pointed out gene groups whose expression was enhanced: Apoptosis inhibitors (BCL2), NF-kappaB (RELB, BCL3), Wnt, TGFbeta, VEGF, MAPKs, Stats, cytokines, chemokines (IL-10, IL-10R, IL-2R, CCL-3, CCL-4, and CCR7), TLR-9, and the surface Ags CD52, CD54, CD70, and CD72. Most of these gene groups are strongly expressed in CLL B cells as compared with normal B cells. Unexpectedly, metabolic pathways, namely cholesterol synthesis and adipogenesis, are also enhanced by CD5. Conversely, CD5 inhibited genes involved in RNA splicing and processing, ribosome biogenesis, proteasome, and CD80 and CD86 Ags, whose expression is low in CLL. Comparison of CD5- vs tailless CD5-transfected cells further demonstrated the role of CD5 phosphorylation in the regulation of selected genes. These results support a model where CLL cells are chronically stimulated, leading to CD5 activation and cell survival. In addition to CD5 itself, we point to several CD5-induced genes as potential therapeutic targets.

摘要

慢性淋巴细胞白血病(CLL)会导致B细胞蓄积,这大概反映了具有抗原的恶性细胞前体的选择以及蛋白质活性的复杂改变。正常B细胞的BCR反复刺激会导致细胞失能和CD5表达,这两者都是CLL的特征。由于BCR激活后CD5在酪氨酸位点发生磷酸化,并在正常B细胞中负向调节BCR信号传导,我们研究了其磷酸化状态,发现它在CLL样本中天然在酪氨酸而非丝氨酸残基上发生磷酸化。为了分析CD5的作用,我们建立了一种CD5发生磷酸化的B细胞系。载体转染与CD5转染B细胞的基因谱分析指出了表达增强的基因组:凋亡抑制因子(BCL2)、核因子κB(RELB、BCL3)、Wnt、转化生长因子β、血管内皮生长因子、丝裂原活化蛋白激酶、信号转导子和转录激活子、细胞因子、趋化因子(白细胞介素10、白细胞介素10受体、白细胞介素2受体、CCL-3、CCL-4和CCR7)、Toll样受体9以及表面抗原CD52、CD54、CD70和CD72。与正常B细胞相比,这些基因组中的大多数在CLL B细胞中强烈表达。出乎意料的是,代谢途径,即胆固醇合成和脂肪生成,也因CD5而增强。相反,CD5抑制参与RNA剪接和加工、核糖体生物发生、蛋白酶体以及CD80和CD86抗原的基因,这些基因在CLL中的表达较低。CD5转染细胞与无尾CD5转染细胞的比较进一步证明了CD5磷酸化在选定基因调控中的作用。这些结果支持了一个模型,即CLL细胞受到慢性刺激,导致CD5激活和细胞存活。除了CD5本身,我们指出几个CD5诱导的基因作为潜在的治疗靶点。

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