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The Alternative Splice Variant of Protein Tyrosine Kinase 6 Negatively Regulates Growth and Enhances PTK6-Mediated Inhibition of β-Catenin

机译:酪氨酸激酶6的替代剪接变体负面调节生长并增强PTK6介导的β-连环蛋白的抑制作用。

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摘要

Protein tyrosine kinase 6 (PTK6), also called breast tumor kinase (BRK), is expressed in epithelial cells of various tissues including the prostate. Previously it was shown that PTK6 is localized to epithelial cell nuclei in normal prostate, but becomes cytoplasmic in human prostate tumors. PTK6 is also primarily cytoplasmic in the PC3 prostate adenocarcinoma cell line. Sequencing revealed expression of wild type full-length PTK6 transcripts in addition to an alternative transcript lacking exon 2 in PC3 cells. The alternative transcript encodes a 134 amino acid protein, referred to here as ALT-PTK6, which shares the first 77 amino acid residues including the SH3 domain with full length PTK6. RT-PCR was used to show that ALT-PTK6 is coexpressed with full length PTK6 in established human prostate and colon cell lines, as well as in primary cell lines derived from human prostate tissue and tumors. Although interaction between full-length PTK6 and ALT-PTK6 was not detected, ALT-PTK6 associates with the known PTK6 substrates Sam68 and β-catenin in GST pull-down assays. Coexpression of PTK6 and ALT-PTK6 led to suppression of PTK6 activity and reduced association of PTK6 with tyrosine phosphorylated proteins. While ALT-PTK6 alone did not influence β-catenin/TCF transcriptional activity in a luciferase reporter assay, it enhanced PTK6-mediated inhibition of β-catenin/TCF transcription by promoting PTK6 nuclear functions. Ectopic expression of ALT-PTK6 led to reduced expression of the β-catenin/TCF targets Cyclin D1 and c-Myc in PC3 cells. Expression of tetracycline-inducible ALT-PTK6 blocked the proliferation and colony formation of PC3 cells. Our findings suggest that ALT-PTK6 is able to negatively regulate growth and modulate PTK6 activity, protein-protein associations and/or subcellular localization. Fully understanding functions of ALT-PTK6 and its impact on PTK6 signaling will be critical for development of therapeutic strategies that target PTK6 in cancer.
机译:蛋白酪氨酸激酶6(PTK6),也称为乳腺肿瘤激酶(BRK),在包括前列腺在内的各种组织的上皮细胞中表达。先前已显示PTK6在正常前列腺中定位于上皮细胞核,但在人前列腺肿瘤中变为细胞质。 PTK6在PC3前列腺腺癌细胞系中也主要是细胞质的。测序揭示了野生型全长PTK6转录本的表达,以及在PC3细胞中缺少外显子2的替代转录本。备选的转录本编码一个134个氨基酸的蛋白质,在这里称为ALT-PTK6,它共有前77个氨基酸残基,包括具有全长PTK6的SH3域。 RT-PCR用于显示ALT-PTK6与全长PTK6在已建立的人前列腺和结肠细胞系以及源自人前列腺组织和肿瘤的原代细胞系中共表达。尽管未检测到全长PTK6和ALT-PTK6之间的相互作用,但在GST下拉试验中,ALT-PTK6与已知的PTK6底物Sam68和β-catenin缔合。 PTK6和ALT-PTK6的共表达导致PTK6活性的抑制和PTK6与酪氨酸磷酸化蛋白的缔合减少。尽管单独的ALT-PTK6在萤光素酶报告基因检测中不影响β-catenin/ TCF转录活性,但它通过促进PTK6核功能增强了PTK6介导的对β-catenin/ TCF转录的抑制。 ALT-PTK6的异位表达导致PC3细胞中β-catenin/ TCF靶标Cyclin D1和c-Myc的表达降低。四环素诱导型ALT-PTK6的表达阻断了PC3细胞的增殖和集落形成。我们的发现表明,ALT-PTK6能够负向调节生长并调节PTK6活性,蛋白质-蛋白质结合和/或亚细胞定位。充分了解ALT-PTK6的功能及其对PTK6信号传导的影响,对于开发针对癌症中PTK6的治疗策略至关重要。

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