Goodman Patricia A, Wood Carla M, Vassilev Alexei O, Mao Chen, Uckun Fatih M
Department of Molecular Genetics, Parker Hughes Institute, 2699 Patton Road, St. Paul, MN 55113, USA.
Leuk Lymphoma. 2003 Jun;44(6):1011-8. doi: 10.1080/1042819031000067576.
Bruton's tyrosine kinase (BTK) is a cytoplasmic tyrosine kinase that serves an essential role in B cell signaling and development. We examined the BTK expression profile of primary leukemic cells from infants with newly diagnosed acute lymphoblastic leukemia (ALL) (N = 14) and from pediatric patients with newly diagnosed (N = 10) or relapsed (N = 5) B-lineage ALL. Analysis of BTK protein and mRNA expression in the infant patient cells (N = 14) showed variable levels of BTK expression with the majority of samples having reduced to absent BTK expression. Sequence analysis of reverse transcriptase-polymerase chain reaction (RT-PCR) products of Btk mRNA from infant leukemia cells revealed the presence of aberrant transcripts. These Btk transcripts were characterized by either deletion of exon 16 (delta16) alone or deletion of both exons 15 and 16 (delta15 and 16). These deletions involve exact exon skipping and encode BTK proteins with either a deleted (delta16), or truncated (delta15 and 16) kinase domain. Extension of these Btk transcript sequencing studies to 15 pediatric B-lineage ALL patients revealed expression of exon 16 deleted Btk transcripts in several pediatric patients, however, none of these pediatric patients expressed transcripts with the exon 15 and 16 deletion. Both reduced expression of Btk message and expression of aberrant deleted Btk transcripts would contribute to reduced BTK protein expression and function in B-lineage leukemia cells. Since BTK is required for radiation induced apoptosis, reduced to absent expression of functional BTK in infant ALL cells could contribute to their radiation resistance.
布鲁顿酪氨酸激酶(BTK)是一种细胞质酪氨酸激酶,在B细胞信号传导和发育中起重要作用。我们检测了新诊断的急性淋巴细胞白血病(ALL)婴儿(N = 14)以及新诊断(N = 10)或复发(N = 5)的B系ALL儿科患者的原发性白血病细胞的BTK表达谱。对婴儿患者细胞(N = 14)中BTK蛋白和mRNA表达的分析显示,BTK表达水平各不相同,大多数样本的BTK表达降低至缺失。对婴儿白血病细胞中Btk mRNA的逆转录聚合酶链反应(RT-PCR)产物进行序列分析,发现存在异常转录本。这些Btk转录本的特征是单独缺失外显子16(delta16)或同时缺失外显子15和16(delta15和16)。这些缺失涉及精确的外显子跳跃,并编码具有缺失(delta16)或截短(delta15和16)激酶结构域的BTK蛋白。将这些Btk转录本测序研究扩展到15例儿科B系ALL患者,发现几名儿科患者中存在外显子16缺失的Btk转录本表达,然而,这些儿科患者均未表达外显子15和16缺失的转录本。Btk信使表达降低和异常缺失的Btk转录本表达均会导致B系白血病细胞中BTK蛋白表达和功能降低。由于辐射诱导的细胞凋亡需要BTK,婴儿ALL细胞中功能性BTK表达降低至缺失可能导致其对辐射产生抗性。