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P210BCR/ABL的SH2结构域对于造血因子依赖性细胞的转化并非必需。

The SH2 domain of P210BCR/ABL is not required for the transformation of hematopoietic factor-dependent cells.

作者信息

Ilaria R L, Van Etten R A

机构信息

Department of Medicine, Brigham and Women's Hospital, Boston, MA, USA.

出版信息

Blood. 1995 Nov 15;86(10):3897-904.

PMID:7579359
Abstract

Src-homology region 2 (SH2) domains, by binding to tyrosine-phosphorylated sequences, mediate specific protein-protein interactions important in diverse signal transduction pathways. Previous studies have shown that activated forms of the Abl tyrosine kinase, including P210BCR/ABL of human chronic myelogenous leukemia, require the SH2 domain for the transformation of fibroblasts. To determine whether SH2 is also required for Bcr/Abl to transform hematopoietic cells, we have studied two SH2 domain mutations in P210BCR/ABL: a point mutation in the conserved FLVRES motif (P210/R1033K), which interferes with phosphotyrosine-binding by SH2, and a complete deletion of SH2 (P210/delta SH2). Despite a negative effect on intrinsic Abl kinase activity, both P210 SH2 mutants were still able to transform the hematopoietic factor-dependent cell lines Ba/F3 and FDC-P1 to growth factor independence. Unexpectedly, both mutants showed greater transforming activity than wild-type P210 in a quantitative transformation assay, probably as a consequence of increased stability of the SH2 mutant proteins in vivo. Cells transformed by both P210 SH2 mutants were leukemogenic in synaptic mice and P210/r1053K mice exhibited a distinct disease phenotype, reminiscent of that induced by v-Abl. These results demonstrate that while the Abl SH2 domain is essential for BCR/ABL transformation of fibroblasts, it is dispensable for the transformation of hematopoietic factor-dependent cell lines.

摘要

Src同源区2(SH2)结构域通过与酪氨酸磷酸化序列结合,介导在多种信号转导途径中起重要作用的特异性蛋白质-蛋白质相互作用。先前的研究表明,Abl酪氨酸激酶的激活形式,包括人类慢性粒细胞白血病的P210BCR/ABL,需要SH2结构域来转化成纤维细胞。为了确定SH2结构域对于Bcr/Abl转化造血细胞是否也是必需的,我们研究了P210BCR/ABL中的两个SH2结构域突变:保守的FLVRES基序中的点突变(P210/R1033K),它会干扰SH2与磷酸酪氨酸的结合,以及SH2的完全缺失(P210/δSH2)。尽管对内在的Abl激酶活性有负面影响,但这两个P210 SH2突变体仍能够将依赖造血因子的细胞系Ba/F3和FDC-P1转化为不依赖生长因子。出乎意料的是,在定量转化试验中,这两个突变体均显示出比野生型P210更高的转化活性,这可能是由于SH2突变蛋白在体内稳定性增加的结果。由两个P210 SH2突变体转化的细胞在突触小鼠中具有致白血病性,并且P210/r1053K小鼠表现出独特的疾病表型,让人联想到由v-Abl诱导的表型。这些结果表明,虽然Abl SH2结构域对于BCR/ABL转化成纤维细胞是必不可少的,但对于依赖造血因子的细胞系的转化却是可有可无的。

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