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Effects of a KiSS-1 peptide, a metastasis suppressor gene, on the invasive ability of renal cell carcinoma cells through a modulation of a matrix metalloproteinase 2 expression.

机译:KiSS-1肽(一种转移抑制基因)通过调节基质金属蛋白酶2的表达对肾癌细胞的侵袭能力的影响。

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Although effects of a metastasis suppressor gene, KiSS-1, have been postulated to be mediated by its receptor, hOT7T175, the mechanism of such effects remains unknown. This study was designed to evaluate the mechanism of how KiSS-1 works and to assess effects of a synthesized truncated KiSS-1 protein on the invasive ability of renal cell carcinoma (RCC) cells. Four RCC cell lines, Caki-1, KU19-20, RSP and RSM, were investigated to determine mRNA expressions of KiSS-1, its receptor, hOT7T175, matrix metalloproteinases (MMPs) and MMP inhibitors. While all cell lines demonstrated hOT7T175 mRNA expressions, only Caki-1 had KiSS-1 transcripts. A synthesized truncated KiSS-1 peptide, metastin (45-54), produced a marked suppression of the invasive ability in KU19-20 cells, which were deficient for KiSS-1 transcripts, but not in Caki-1 cells. Metastin (45-54) also increased the ability of KU19-20 cells to attach to collagen 4. Both MMP-2 mRNA levels and protein production were significantly decreased only in KU19-20 cells by metastin (45-54). In conclusion, metastin (45-54) may have potential therapeutic use by suppressing the motility and invasive ability of RCC cells which possess hOT7T175 with either a negative expression or very low expression level of KiSS-1 through, at least in part, the down-regulation of MMP-2.
机译:尽管已经假定转移抑制基因KiSS-1的作用是由其受体hOT7T175介导的,但这种作用的机制仍然未知。本研究旨在评估KiSS-1的工作机制,并评估合成的截短KiSS-1蛋白对肾细胞癌(RCC)细胞侵袭能力的影响。研究了四种RCC细胞系Caki-1,KU19-20,RSP和RSM,以确定KiSS-1,其受体,hOT7T175,基质金属蛋白酶(MMP)和MMP抑制剂的mRNA表达。尽管所有细胞系均表现出hOT7T175 mRNA表达,但只有Caki-1具有KiSS-1转录本。合成的截短的KiSS-1肽metastin(45-54)在KU19-20细胞中具有显着的侵袭能力抑制作用,而对于KiSS-1转录物而言,KU19-20细胞却缺乏,但在Caki-1细胞中却没有。 Metastin(45-54)也增加了KU19-20细胞附着于胶原蛋白4的能力。Metastin(45-54)仅在KU19-20细胞中MMP-2 mRNA水平和蛋白质产生均显着降低。总之,metastin(45-54)可能通过抑制至少部分通过表达下调而具有KiSS-1负表达或非常低表达水平的hOT7T175的RCC细胞的运动性和侵袭能力而具有潜在的治疗用途。 -调节MMP-2。

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