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DNA Microarray Gene Expression Profile of Marginal Zone versus Follicular B cells and Idiotype Positive Marginal Zone B cells Before and After Immunization with Streptococcus pneumoniae

机译:肺炎链球菌免疫前后边缘区对滤泡B细胞和独特型阳性边缘区B细胞的DNA芯片基因表达谱

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摘要

Marginal Zone (MZ) B cells play an important role in the clearance of blood-borne bacterial infections via rapid T-independent IgM responses. We have previously demonstrated that MZ B cells respond rapidly and robustly to bacterial particulates. To determine the MZ-specific genes that are expressed to allow for this response, MZ and Follicular (FO) B cells were sort-purified and analyzed via DNA microarray analysis. We identified 181 genes that were significantly different between the two B cell populations. 99 genes were more highly expressed in MZ B cells while 82 genes were more highly expressed in FO B cells. To further understand the molecular mechanisms by which MZ B cells respond so rapidly to bacterial challenge, idiotype positive and negative MZ B cells were sort-purified before (0 hour) or after (1 hour) i.v. immunization with heat killed Streptococcus pneumoniae, R36A, and analyzed via DNA microarray analysis. We identified genes specifically up regulated or down regulated at 1 hour following immunization in the idiotype positive MZ B cells. These results give insight into the gene expression pattern in resting MZ vs. FO B cells and the specific regulation of gene expression in antigen-specific MZ B cells following interaction with antigen.
机译:边缘区(MZ)B细胞通过快速的T依赖性IgM反应在清除血源性细菌感染中起重要作用。先前我们已经证明MZ B细胞对细菌微粒具有快速而强大的反应。为了确定表达的MZ特异性基因以允许这种反应,对MZ和Follicular(FO)B细胞进行分选纯化,并通过DNA微阵列分析进行分析。我们鉴定出两个B细胞群之间有181个显着不同的基因。 MZ B细胞中有99个基因高表达,而FO B细胞中有82个基因高表达。为了进一步理解MZ B细胞如此迅速地对细菌攻击作出反应的分子机制,在静脉内(0小时)或之后(1小时)对独特型阳性和阴性MZ B细胞进行分选纯化。用热杀死的肺炎链球菌R36A免疫,并通过DNA芯片分析进行分析。我们在独特型阳性MZ B细胞中免疫后1小时发现了特异性上调或下调的基因。这些结果使人们深入了解了静止的MZ与FO B细胞中的基因表达模式,以及与抗原相互作用后抗原特异性MZ B细胞中基因表达的特异性调控。

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