Yamamoto Miki L, Clark Tyson A, Gee Sherry L, Kang Jeong-Ah, Schweitzer Anthony C, Wickrema Amittha, Conboy John G
Life Sciences Division, Lawrence Berkeley National Laboratory, Berkeley, CA 94720, USA.
Blood. 2009 Apr 2;113(14):3363-70. doi: 10.1182/blood-2008-05-160325. Epub 2009 Feb 4.
Differentiating erythroid cells execute a unique gene expression program that insures synthesis of the appropriate proteome at each stage of maturation. Standard expression microarrays provide important insight into erythroid gene expression but cannot detect qualitative changes in transcript structure, mediated by RNA processing, that alter structure and function of encoded proteins. We analyzed stage-specific changes in the late erythroid transcriptome via use of high-resolution microarrays that detect altered expression of individual exons. Ten differentiation-associated changes in erythroblast splicing patterns were identified, including the previously known activation of protein 4.1R exon 16 splicing. Six new alternative splicing switches involving enhanced inclusion of internal cassette exons were discovered, as well as 3 changes in use of alternative first exons. All of these erythroid stage-specific splicing events represent activated inclusion of authentic annotated exons, suggesting they represent an active regulatory process rather than a general loss of splicing fidelity. The observation that 3 of the regulated transcripts encode RNA binding proteins (SNRP70, HNRPLL, MBNL2) may indicate significant changes in the RNA processing machinery of late erythroblasts. Together, these results support the existence of a regulated alternative pre-mRNA splicing program that is critical for late erythroid differentiation.
分化中的红细胞执行独特的基因表达程序,以确保在成熟的每个阶段合成适当的蛋白质组。标准表达微阵列可深入了解红细胞基因表达,但无法检测由RNA加工介导的转录本结构的定性变化,而这种变化会改变编码蛋白的结构和功能。我们通过使用可检测单个外显子表达改变的高分辨率微阵列,分析了晚期红细胞转录组中的阶段特异性变化。鉴定出了10种与成红细胞剪接模式相关的分化相关变化,包括先前已知的蛋白4.1R外显子16剪接的激活。发现了6种涉及内部盒式外显子增强包含的新的可变剪接开关,以及3种可变第一外显子使用的变化。所有这些红细胞阶段特异性剪接事件均代表真实注释外显子的激活包含,表明它们代表一个活跃的调控过程,而非剪接保真度的普遍丧失。3种受调控的转录本编码RNA结合蛋白(SNRP70、HNRPLL、MBNL2)这一观察结果可能表明晚期成红细胞的RNA加工机制发生了重大变化。总之,这些结果支持存在一种受调控的可变前体mRNA剪接程序,该程序对晚期红细胞分化至关重要。