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犬肥大细胞瘤细胞系中c-Kit受体的异常自磷酸化。

Aberrant autophosphorylation of c-Kit receptor in canine mast cell tumor cell lines.

作者信息

Takeuchi Yoshinori, Fujino Yasuhito, Watanabe Manabu, Nakagawa Takayuki, Ohno Koichi, Sasaki Nobuo, Sugano Sumio, Tsujimoto Hajime

机构信息

Department of Veterinary Internal Medicine, Graduate School of Agricultural and Life Sciences, The University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-8657, Japan.

出版信息

Vet Immunol Immunopathol. 2010 Oct 15;137(3-4):208-16. doi: 10.1016/j.vetimm.2010.05.009. Epub 2010 May 31.

Abstract

Several studies indicated that KIT mutation could cause ligand-independent activation of c-Kit receptor in canine mast cell tumor (MCT). The objective of this study was to investigate mechanisms of c-Kit receptor activation in various canine MCT cell lines. Four cell lines, HRMC (derived from cutaneous MCT), VIMC1 (visceral MCT), CoMS1 (visceral MCT) and CMMC1 (cutaneous MCT), were cultured in stem cell factor (SCF, a ligand of c-Kit receptor)-free medium and subjected to analyses of KIT mutation, c-Kit receptor phosphorylation, SCF expression and the effects of SCF stimulation. In addition, the SCF/c-Kit receptor autocrine mechanism was verified in HRMC cells. HRMC cells expressed wild type c-Kit receptor. Both VIMC1 and CoMS1 cells had the same one amino acid (AA) substitution in the extracellular domain of c-Kit receptor. CMMC1 cells had at least three variants of c-Kit receptor such as one AA deletion in the extracellular domain (variant A), one AA substitution in the extracellular domain as well as an internal tandem duplication in the juxtamembrane domain (variant B), and a nonsense mutation (variant C). Both mature and immature forms of c-Kit receptor were observed and the c-Kit receptors were phosphorylated in all cell lines. While both mature and immature forms of c-Kit receptor were substantially phosphorylated in CMMC1 cells, the immature form was slightly phosphorylated in other cell lines. Phosphorylation of c-Kit receptor in HRMC, VIMC1 and CoMS1 cells were enhanced by SCF stimulation whereas no enhancement was observed in CMMC1 cells. There was no effect of SCF stimulation on proliferation of all the cell lines. SCF protein was detectable in only HRMC cells although mRNA expression of SCF was detected in all the cell lines. A tyrosine kinase inhibitor Dasatinib (internal inhibitor) inhibited c-Kit receptor phosphorylation in HRMC cells whereas anti-canine SCF antibody (external inhibitor) had no inhibitory effect. Thus there could be no external SCF/c-Kit receptor autocrine mechanism whereas there could be an internal autocrine mechanism within HRMC cells. The results indicated that consistent c-Kit receptor phosphorylation could be caused by the stimulation with autocrine SCF in HRMC cells while it could be caused by functional mutations of KIT in VIMC1, CoMS1 and CMMC1 cells. As the four canine MCT cell lines had various aberrations associated with c-Kit receptor phosphorylation, KIT mutation and SCF expression, such molecular biological diversity might reflect the different biological behavior in canine MCT.

摘要

多项研究表明,KIT突变可导致犬肥大细胞瘤(MCT)中c-Kit受体的配体非依赖性激活。本研究的目的是探讨各种犬MCT细胞系中c-Kit受体激活的机制。将四种细胞系,即HRMC(源自皮肤MCT)、VIMC1(内脏MCT)、CoMS1(内脏MCT)和CMMC1(皮肤MCT),在无干细胞因子(SCF,c-Kit受体的配体)的培养基中培养,并进行KIT突变、c-Kit受体磷酸化、SCF表达及SCF刺激作用的分析。此外,在HRMC细胞中验证了SCF/c-Kit受体自分泌机制。HRMC细胞表达野生型c-Kit受体。VIMC1和CoMS1细胞在c-Kit受体的胞外域均有相同的一个氨基酸(AA)替换。CMMC1细胞至少有三种c-Kit受体变体,如胞外域一个AA缺失(变体A)、胞外域一个AA替换以及近膜域一个内部串联重复(变体B)和一个无义突变(变体C)。在所有细胞系中均观察到成熟和未成熟形式的c-Kit受体,且c-Kit受体均被磷酸化。虽然在CMMC1细胞中成熟和未成熟形式的c-Kit受体均大量磷酸化,但在其他细胞系中未成熟形式仅轻微磷酸化。HRMC、VIMC1和CoMS1细胞中c-Kit受体的磷酸化通过SCF刺激而增强,而在CMMC1细胞中未观察到增强。SCF刺激对所有细胞系的增殖均无影响。仅在HRMC细胞中可检测到SCF蛋白,尽管在所有细胞系中均检测到SCF的mRNA表达。酪氨酸激酶抑制剂达沙替尼(内部抑制剂)可抑制HRMC细胞中c-Kit受体的磷酸化,而抗犬SCF抗体(外部抑制剂)无抑制作用。因此,可能不存在外部SCF/c-Kit受体自分泌机制,而HRMC细胞内可能存在内部自分泌机制。结果表明,HRMC细胞中自分泌SCF的刺激可导致c-Kit受体持续磷酸化,而VIMC1、CoMS1和CMMC1细胞中KIT的功能突变可导致其磷酸化。由于这四种犬MCT细胞系在c-Kit受体磷酸化、KIT突变和SCF表达方面存在各种异常,这种分子生物学多样性可能反映了犬MCT中不同的生物学行为。

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