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Nm23-H1 homologs suppress tumor cell motility and anchorage independent growth

机译:Nm23-H1同源物抑制肿瘤细胞运动并锚定独立生长

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摘要

Nm23-H1 suppresses metastasis, as well as in vitro cell motility, invasion and anchorage independent growth, in a variety of cancer models. Eight human homologs of Nm23 have been identified that share 26–88% identity with the prototype Nm23-H1. Here, we examine the potential of its homologs, -H2, DR-, -H4 and -H5, to inhibit in vitro correlates of metastasis in two highly metastatic human cell lines, MDA-MB-435 and MDA-MB-231. The metastatic cells were transfected with mammalian expression constructs containing the genes encoding for Nm23-H1, -H2, DR-, -H4 and -H5 and the resultant transfectants were analyzed by Boyden chamber motility and soft agar colonization assays. Nm23-H1 suppressed motility by 3.3- and 1.5-fold in MDA-MB-435 and MDA-MB-231 cells, respectively and inhibited anchorage independent growth in soft agar by 2.9- and 1.9-fold, respectively. None of the -H1 homologs were capable of suppressing motility in MDA-MB-435 cells, but in MDA-MB-231 cells, -H2 inhibited motility by 3-fold upon overexpression. When anchorage independent growth was assessed, -H2, -H4 and -H5 suppressed growth from 1.2- to 2.0-fold in both cell lines. Given their ability to suppress anchorage independent growth, Nm23-H1 homologs -H2, -H4 and -H5 may have some capacity to suppress metastasis. Motility suppression appears to be cell context dependent, but sequence disparities between -H1/H2 and the other family members may reveal regions critical for this inhibitory phenotype. Similarly, sequence differences between DR-Nm23 and its homologs may be important for anchorage independent growth suppression.
机译:Nm23-H1在多种癌症模型中均抑制转移以及体外细胞运动,侵袭和锚定独立生长。已鉴定出八个Nm23人类同源物,它们与原型Nm23-H1具有26-88%的同一性。在这里,我们检查了其同源物-H2,DR-,-H4和-H5抑制两种高度转移性人类细胞系MDA-MB-435和MDA-MB-231的体外转移相关性的潜力。用包含编码Nm23-H1,-H2,DR-,-H4和-H5的基因的哺乳动物表达构建体转染转移细胞,并通过博登室运动性和软琼脂定植分析法分析所得的转染子。 Nm23-H1分别在MDA-MB-435和MDA-MB-231细胞中将运动抑制了3.3倍和1.5倍,在软琼脂中的锚定独立生长分别抑制了2.9倍和1.9倍。 -H1同源物均不能在MDA-MB-435细胞中抑制运动,但是在MDA-MB-231细胞中,-H2在过表达时抑制运动3倍。当评估锚定独立生长时,两种细胞系中-H2,-H4和-H5抑制生长从1.2-至2.0倍。鉴于其抑制锚定独立生长的能力,Nm23-H1同源物-H2,-H4和-H5可能具有一定的抑制转移的能力。运动抑制似乎是细胞上下文相关的,但-H1 / H2与其他家族成员之间的序列差异可能揭示了对该抑制表型至关重要的区域。同样,DR-Nm23及其同源物之间的序列差异对于锚定非依赖性生长抑制可能很重要。

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