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首页> 外文期刊>Biochimica et biophysica acta. Molecular basis of disease: BBA >Identification of differential phosphorylation and sub-cellular localization of the metastasis suppressor, NDRG1
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Identification of differential phosphorylation and sub-cellular localization of the metastasis suppressor, NDRG1

机译:鉴定转移抑制剂的差分磷酸化和亚细胞定位,NDRG1

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The metastasis suppressor, N-myc downstream regulated gene-1 (NDRG1), exhibits pleiotropic activity, inhibiting metastasis of various tumor-types, while being correlated with metastasis in others. Notably, NDRG1 phosphorylation and cleavage are associated with its function, although it is unclear if these modifications occur universally, or selectively, in different cancer cell-types and if it contributes to its pleiotropy. Considering the suggested DNA repair role of nuclear NDRG1, the effects of the above post-translational modifications on its nuclear localization was examined. Herein, the full-length (FL) and truncated (T) NDRG1 isoforms were detected using a C-terminus-directed antibody, while only the FL isoform was identified using an N-terminus-directed antibody. For the first time, we demonstrate that the expression of the NDRG1 FL and T forms occurs in all cancer cell-types examined, as does its phosphorylation (p-NDRG1) at Ser330 and Thr346. The FL isoform localized highly in the nucleus compared to the T isoform. Moreover, p-NDRG1 (Ser330) was also markedly localized in the nucleus, while p-NDRG1 (Thr346) was predominantly cytoplasmic in all cell-types. These results indicate the N-terminus region and phosphorylation at Ser330 could be crucial for NDRG1 nuclear localization and function. PTEN silencing indicated that p-NDRG1 (Thr346) could be regulated differentially in different tumor cell-types, indicating PTEN may be involved in the mechanism(s) underlying the pleiotropic activity of NDRG1. Finally, therapeutics of the di-2-pyridylketone thiosemicarbazone class increased nuclear NDRG1 isoforms (FL and T) detected by the C-terminus-directed antibody in HepG2 cells, while having no significant effect in PC3 cells, indicating differential activity depending on the cell-type.
机译:转移抑制剂,N-MYC下游调节基因-1(NDRG1)表现出抗磷酸盐活性,抑制各种肿瘤类型的转移,同时与其他肿瘤的转移相关。值得注意的是,NDRG1磷酸化和切割与其功能相关,尽管目前尚不清楚这些修饰是否普遍普遍,或选择性地在不同的癌细胞类型中出现,并且如果它有助于其肺炎。考虑到核NDRG1的建议DNA修复作用,研究了上述翻译后修改对其核定位的影响。这里,使用C-末端定向抗体检测全长(FL)和截短的(T)NDRG1同种型,而使用N-末端定向抗体仅鉴定FL同种型。我们首次证明NDRG1 FL和T形式的表达发生在检查的所有癌细胞类型中,如SER330和THR346的磷酸化(P-NDRG1)。与T同种型相比,FL同种型在核中高度局部化。此外,P-NDRG1(Ser330)也显着地在核中局部化,而P-NDRG1(Thr346)在所有细胞类型中主要是细胞质。这些结果表明SER330的N-末端区域和磷酸化对于NDRG1核定位和功能至关重要。 PTEN沉默表明,P-NDRG1(THR346)可以在不同的肿瘤细胞类型中差异调节,表明PTEN可以参与下面的NDRG1的渗透活性的机制。最后,二-2-吡啶酮硫代吡酮硫代吡啶族巨脂醛阶级的治疗剂增加了由HepG2细胞中的C-末端定向抗体检测的核NDRG1同种型(FL和T),同时在PC3细胞中对PC3细胞没有显着影响,这表明根据细胞的差异活性-类型。

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