Sekine Rieko, Kitamura Toshio, Tsuji Takashi, Tojo Arinobu
Division of Molecular Therapy, Institute of Medical Science, University of Tokyo, Tokyo, Japan.
Immunol Lett. 2007 Jul 31;111(1):21-5. doi: 10.1016/j.imlet.2007.04.004. Epub 2007 May 15.
We identified three Pax5 isoforms due to alternative splicing of the C-terminal exons of its gene in cord blood (CB)-derived B cell progenitors cultivated on the murine bone marrow stromal (HESS-5) cells. Apart from wild type (wt), one isoform skips exon 9 without subsequent frameshift (del9), while the other has a frameshift insert between exons 8 and 9, resulting in novel C-terminal sequences (ins8'). Quantitative reverse transcription-polymerase chain reaction analysis revealed that wt mRNA could be detected in CB CD34(+) cells, but that del9 and ins8' isoforms only appeared after 1 or 3 weeks of co-culture, respectively. Expression of each isoform mRNA was markedly upregulated during B cell differentiation in vitro, and wild type continued to be the most abundant isoform. In a luciferase reporter assay using a synthetic CD19 enhancer, del9 isoform revealed slightly lower activity and ins8' isoform showed much lower activity, compared with Pax5-wt. Furthermore, retroviral expression of each Pax5 isoform in CB CD34(+) cells induced aberrant CD19 expression in a fraction of immature myeloid cells after 1 week of culture, although del9 and ins8' isoforms showed much less potent activity than Pax5-wt. These results suggest that Pax5-wt is quantitatively and qualitatively dominant over other C-terminal isoforms during human B cell differentiation.
我们在培养于小鼠骨髓基质(HESS-5)细胞上的脐血(CB)来源的B细胞祖细胞中,鉴定出三种由于其基因C末端外显子选择性剪接而产生的Pax5异构体。除野生型(wt)外,一种异构体跳过外显子9且无后续移码(del9),而另一种在第8和第9外显子之间有移码插入,产生新的C末端序列(ins8')。定量逆转录-聚合酶链反应分析显示,wt mRNA可在CB CD34(+)细胞中检测到,但del9和ins8'异构体分别仅在共培养1周或3周后出现。在体外B细胞分化过程中,每种异构体mRNA的表达均显著上调,且野生型仍然是最丰富的异构体。在使用合成CD19增强子的荧光素酶报告基因检测中,与Pax5-wt相比,del9异构体显示出略低的活性,而ins8'异构体显示出低得多的活性。此外,在培养1周后CB CD34(+)细胞中每种Pax5异构体的逆转录病毒表达在一部分未成熟髓样细胞中诱导了异常的CD19表达,尽管del9和ins8'异构体的活性比Pax5-wt弱得多。这些结果表明,在人类B细胞分化过程中,Pax5-wt在数量和质量上均优于其他C末端异构体。