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RBBP6 interactome: RBBP6 isoform 3/DWNN and Nek6 interaction is critical for cell cycle regulation and may play a role in carcinogenesis

机译:RBBP6互乱组:RBBP6同种型3 / DWNN和NEK6相互作用对于细胞周期调节至关重要,可能在致癌中发挥作用

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RBBP6 is a multidomain protein, with four splice variants translated into four functional isoforms. RBBP6 isoform 1 has been reported to interact with TP53 and pRb as well as with proteins that regulate transcriptional response to tumorigenesis such as HDM2, ZBTB38, YBX1 and NEK6. Experimental validation of isoforms 2 and 4 is yet to be conducted. The third isoform, consisting of only the DWNN domain and a short unordered c terminus, has been shown to be down-regulated in several human cancers and demonstrated as a regulator of G2/M cell cycle arrest. A number of studies have supported the role of DWNN in cell cycle regulation, however, its mechanism in these processes remains obscure. Posttranslational modification of DWNN could be critical for its function and this study was formulated to understand how the DWNN regulates the cell cycle. Our study identified 12?cell cycle-related proteins interacting with DWNN using various bioinformatics tools. We also identified 10 ubiquitin ligases that interact with DWNN. The most relevant interacting partner, the cell cycle regulator Nek6, has been reported to interact with DWNN during the cell cycle. It was therefore critical to interrogate the interaction between Nek6 and DWNN by homology modelling and docking. The DWNN mutants had a reduced affinity for NEK6 with at least one of the mutants having changes that affect at least one phosphorylation site. It is likely that NEK6 promotes cell proliferation by phosphorylating DWNN. This work suggests that DWNN co-regulates RNA splicing, ubiquitination, and cell cycle control. DWNN may therefore, be targeted for novel anticancer therapies through cell cycle regulation.
机译:RBBP6是多麦田蛋白质,四种拼接变体转化为四种功能性同种型。据报道,RBBP6同种型1与TP53和PRB相互作用,以及调节对肿瘤发生的转录响应的蛋白质,例如HDM2,ZBTB38,YBX1和NEK6。同种型2和4的实验验证尚未进行。仅由DWNN结构域和短的无序C末端组成的第三个同种型已被证明在几种人类癌症中下调,并作为G2 / M细胞周期停滞的调节剂。许多研究支持DWNN在细胞周期调节中的作用,然而,其在这些过程中的机制仍然模糊不清。 DWNN的后期修改对于其功能至关重要,并制定了该研究以了解DWNN如何调节细胞周期。我们的研究确定了12?细胞周期相关的蛋白质使用各种生物信息学工具与DWNN相互作用。我们还确定了10个与DWNN相互作用的泛素连接酶。据报道,最相关的相互作用伙伴,细胞周期调节器NEK6在细胞周期期间与DWNN相互作用。因此,通过同源性建模和对接询问NEK6和DWNN之间的相互作用是至关重要的。 DWNN突变体对NEK6具有减少的亲和力,其中具有影响至少一个磷酸化位点的变化的至少一个突变体。 NEK6很可能通过磷酸化DWNN促进细胞增殖。这项工作表明DWNN共调节RNA剪接,泛素化和细胞周期控制。因此,DWNN可以通过细胞周期调节来靶向新的抗癌疗法。

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