Tsujimura T, Morimoto M, Hashimoto K, Moriyama Y, Kitayama H, Matsuzawa Y, Kitamura Y, Kanakura Y
Department of Pathology, Osaka University Medical School, Japan.
Blood. 1996 Jan 1;87(1):273-83.
A peculiar point mutation results in constitutive activation of c-kit receptor tyrosine kinase (KIT) in three different tumor mast cell lines; ie, the HMC-1, P-815, and RBL-2H3. Because constitutive activation of KIT was also observed in the FMA3 mouse mastocytoma cell line, we investigated the molecular mechanism. Sequencing of the whole coding region of the c-kit showed that the point mutation found in HMC-1, P-815, and RBL-2H3 cells was absent in FMA3 cells and that the c-kit cDNA of FMA3 cells carried an in-frame deletion of 21 base pairs (bp) encoding Thr-Gln-Leu-Pro-Tyr-Asp-His at codons 573 to 579 at the juxtamembrane domain. The FMA3-type c-kit cDNA with 21 bp deletion was introduced into the IC-2 cell line, which was derived from murine cultured mast cells. IC-2 cells were dependent on interleukin (IL)-3 and did not express KIT on the surface. In IC-2 cells introduced with the FMA3-type c-kit cDNA, KIT was constitutively phosphorylated on tyrosines and activated. Moreover, the FMA3-type KIT was dimerized without the stimulation by stem cell factor (SCF), a ligand for KIT. The spontaneously dimerized FMA3-type KIT without SCF binding was not internalized even after the activation. IC-2 cells expressing the FMA3-type KIT grew in suspension culture without IL-3 and SCF and became leukemic in nude athymic mice. The deletion of seven amino acids at the juxtamembrane domain appeared to be a new activating mutation of KIT that might be involved in neoplastic growth of mast cells.
一种特殊的点突变导致三种不同的肿瘤肥大细胞系(即HMC-1、P-815和RBL-2H3)中的c-kit受体酪氨酸激酶(KIT)组成性激活。由于在FMA3小鼠肥大细胞瘤细胞系中也观察到KIT的组成性激活,我们研究了其分子机制。c-kit整个编码区的测序表明,在FMA3细胞中不存在在HMC-1、P-815和RBL-2H3细胞中发现的点突变,并且FMA3细胞的c-kit cDNA在近膜结构域的第573至579密码子处存在一个21个碱基对(bp)的框内缺失,该缺失编码苏氨酸-谷氨酰胺-亮氨酸-脯氨酸-酪氨酸-天冬氨酸-组氨酸。将具有21 bp缺失的FMA3型c-kit cDNA导入源自小鼠培养肥大细胞的IC-2细胞系。IC-2细胞依赖白细胞介素(IL)-3,并且在表面不表达KIT。在用FMA3型c-kit cDNA转导的IC-2细胞中,KIT的酪氨酸持续磷酸化并被激活。此外,FMA3型KIT在没有KIT配体干细胞因子(SCF)刺激的情况下发生二聚化。即使在激活后,未与SCF结合的自发二聚化的FMA3型KIT也不会内化。表达FMA3型KIT的IC-2细胞在无IL-3和SCF的悬浮培养中生长,并在无胸腺裸鼠中发生白血病。近膜结构域七个氨基酸的缺失似乎是KIT的一种新的激活突变,可能参与肥大细胞的肿瘤生长。