Expression profile of HIP1R in B-cell subsets and in silico prediction of its functions in diffuse large B-cell lymphoma

Kah Keng Wong, A. Banham
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Abstract

Huntingtin-interacting protein 1 (HIP1R) is an endocytic protein involved in endocytosis of surface receptors by regulating actin polymerization. We have previously shown that HIP1R was expressed in lymphoid B cells and diffuse large B-cell lymphoma (DLBCL) associated with better survival. Herein, we examined the expression profile of HIP1R in different immune cell populations and its potential functions in DLBCL. By utilizing a validated anti-HIP1R monoclonal antibody (clone 44), we examined whether the following immune cells in human reactive tonsils expressed HIP1R through double immunostaining: T cells (CD3+), macrophages (CD68+), mantle zone (MZ) B cells (PAX5+), germinal centre (GC) B cells (BCL6+) and plasma cells (IRF4/MUM1+). HIP1R was strongly expressed in PAX5+ MZ B cells, moderately expressed in BCL6+ GC B cells, but absent in CD3+ T cells, CD68+ macrophages and IRF4/MUM1+ plasma cells. In particular, we observed that HIP1R was absent in IRF4/MUM1+ plasma cells residing within the GC or non-GC interfollicular regions, suggesting that IRF4/MUM1 might downregulate HIP1R expression in activated B cells. We have previously shown that HIP1R expression is directly suppressed by the transcription factor FOXP1 in activated B-cell-like diffuse large B-cell lymphoma (ABC-DLBCL) cells, however FOXP1 is absent in normal plasma cells, suggesting the presence of other regulators. Our previous immunostaining results in a series of DLBCL patient cases (n=155) showed a significant inverse correlation between HIP1R and IRF4/MUM1 (Pearson r = −0.495; p < 0.001). Indeed, knockdown of IRF4/MUM1 expression in the ABC-DLBCL cell line OCI-LY3 by two independent IRF4 siRNA constructs increased HIP1R expression at both transcript and protein levels. In terms of functional relevance, the bioinformatics approach Gene Set Enrichment Analysis (GSEA) was adopted to examine gene sets positively-associated with HIP1R transcript expression profile in three independent gene expression profiling (GEP) datasets of DLBCL patient cases derived from Gene Expression Omnibus database i.e. GSE10846 (n=233), GSE23501 (n=63), and GSE19246 (n=59). Our GSEA results showed that the gene set �Rho GTPase Activator Activity� (GO ID:0005100) was significantly positively-associated with HIP1R expression profile across all three GEP datasets GSE10846 (p = 0.0016), GSE23501 (p < 0.0001) and GSE19246 (p = 0.0167). These results suggest that HIP1R is involved in the activation of Rho GTPase signaling pathway, which has been documented to inhibit migration of DLBCL cells, and HIP1R expression is suppressed by transcription factors involved in B-cell activation including FOXP1 and IRF4/MUM1.
HIP1R在b细胞亚群中的表达谱及其在弥漫性大b细胞淋巴瘤中的功能的计算机预测
亨廷顿蛋白相互作用蛋白1 (HIP1R)是一种内吞蛋白,通过调节肌动蛋白聚合参与表面受体的内吞作用。我们之前已经证明HIP1R在淋巴样B细胞和弥漫性大B细胞淋巴瘤(DLBCL)中表达与更好的生存率相关。在此,我们研究了HIP1R在不同免疫细胞群中的表达谱及其在DLBCL中的潜在功能。利用已验证的抗HIP1R单克隆抗体(克隆44),我们通过双免疫染色检测了人类反应性扁桃体中以下免疫细胞是否表达HIP1R: T细胞(CD3+)、巨噬细胞(CD68+)、套区(MZ) B细胞(PAX5+)、生发中心(GC) B细胞(BCL6+)和浆细胞(IRF4/MUM1+)。HIP1R在PAX5+ MZ B细胞中强烈表达,在BCL6+ GC B细胞中中等表达,但在CD3+ T细胞、CD68+巨噬细胞和IRF4/MUM1+浆细胞中不表达。特别是,我们观察到位于GC或非GC滤泡间区的IRF4/MUM1+浆细胞中缺乏HIP1R,这表明IRF4/MUM1可能下调了激活B细胞中HIP1R的表达。我们之前的研究表明,在活化的b细胞样弥漫大b细胞淋巴瘤(ABC-DLBCL)细胞中,转录因子FOXP1直接抑制HIP1R的表达,但FOXP1在正常浆细胞中不存在,这表明存在其他调节因子。我们之前在一系列DLBCL患者病例(n=155)中的免疫染色结果显示,HIP1R和IRF4/MUM1之间存在显著的负相关(Pearson r = - 0.495;P < 0.001)。事实上,在ABC-DLBCL细胞系OCI-LY3中,通过两种独立的IRF4 siRNA构建物敲低IRF4/MUM1表达,可以在转录物和蛋白水平上增加HIP1R的表达。在功能相关性方面,采用生物信息学方法基因集富集分析(GSEA),在来自Gene expression Omnibus数据库的三个独立基因表达谱(GEP)数据集中,即GSE10846 (n=233)、GSE23501 (n=63)和GSE19246 (n=59)中检测与HIP1R转录物表达谱正相关的基因集。我们的GSEA结果显示,基因集“Rho GTPase Activator Activity”(GO ID:0005100)在所有三个GEP数据集GSE10846 (p = 0.0016)、GSE23501 (p < 0.0001)和GSE19246 (p = 0.0167)中与HIP1R表达谱显著正相关。这些结果表明,HIP1R参与激活Rho GTPase信号通路,抑制DLBCL细胞的迁移,并且HIP1R的表达被包括FOXP1和IRF4/MUM1在内的参与b细胞激活的转录因子抑制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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