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Characterization of ankyrin repeat domain 54 (ANKRD54) and its role on the regulation and subcellular localization of Bruton’s tyrosine kinase (BTK)

机译:锚蛋白重复结构域54(ANKRD54)的特征及其在布鲁顿酪氨酸激酶(BTK)的调控和亚细胞定位中的作用

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摘要

Bruton's tyrosine kinase (BTK) is an important cytoplasmic signaling protein, where the kinase activity plays a pivotal role in the development, proliferation and differentiation of B-cell lineages. Ankyrin repeat domain 54 (ANKRD54) is a nuclear-resident adaptor protein, where the ankyrin domain repeats are critical for specific protein-protein interaction, while the NLS and NES motifs control the nucleo-cytoplasmic shuttling ability.We have identified and characterized ANKRD54 as a novel functional (paper I), interaction-partner for BTK using proteomics analysis. ANKRD54 is the first protein identified that specially influences the nuclear export of both BTK and TXK/RLK, in a Crm-1 dependent manner. Further, we mapped the interaction site to the C -terminus of BTK-SH3 domain, by using a synthetic peptide of BTK, covering the following region: C- ARDKNGQEEGYIPSNYVTEAEDS. In addition, tyrosine phosphorylation of BTK was investigated in the presence of increased amount of ANKRD54 and selectively the phosphorylation of BTK was down regulated.We have presented a second novel interaction-partner and regulator of BTK (paper II), the 14-3-3 ζ protein, which is also identified by proteomics strategy. In this work, we have mapped the interaction sites on BTK to phospho-serine pS51 in the (RGRRGpS)-motif in the PH-domain and phospho-threonine pT495 in the (RHRFQpT)-motif in the kinase domain. Additionally, a newly characterized 14-3-3 inhibitor (BV02) interfered binding with BTK and siRNA knockdown of 14-3-3ζ increased the nuclear translocation of BTK, while overexpression of 14-3-3ζ resulted in accumulation of BTK in the perinuclear region.We have generated single ankryin domain deletions of ANKRD54 and subsequently characterized their binding capacity and also their influence on the sub-cellular localization of BTK (paper III). In this work, we report that three out of four ankyrin repeats are required for the interaction and nucleo-cytoplasmic shuttling of BTK. Inhibition of Crm-1 nuclear export pathway influences differently the nuclear shuttling; rapid-ANKRD54 versus slow-BTK nuclear accumulation. Furthermore, we have determined that the interaction between BTK and ANKRD54 establishes in the nuclear compartment.We have classified ANKRD54 as a prime interactor to the SH3-domain of BTK (paper IV). In this study, we utilized a screening strategy based on phage display libraries of the complete human “SH3-domainome” as a possible binding-target for ANKRD54. The aim is to identify the target spectrum and specificity of ANKRD54 for SH3 domain library, containing all the 296 human SH3 domains. The novel finding is that BTK is not only binding to ANKRD54, but also stands out as the preferred interactor, being highly dominant over all other human SH3 domains. However, other lower colony-score candidates for SH3-domain interactions were found, but without any further in vivo/in vitro validation.
机译:布鲁顿酪氨酸激酶(BTK)是一种重要的细胞质信号蛋白,该激酶的活性在B细胞谱系的发育,增殖和分化中起着关键作用。锚蛋白重复结构域54(ANKRD54)是一种驻留在核内的衔接蛋白,其中锚蛋白结构域重复对于特定的蛋白质-蛋白质相互作用至关重要,而NLS和NES基序控制着核质穿梭能力。一种新颖的功能(论文I),使用蛋白质组学分析进行BTK的相互作用伙伴。 ANKRD54是第一个以Crm-1依赖性方式特别影响BTK和TXK / RLK核输出的蛋白质。此外,我们通过使用BTK的合成肽,将相互作用位点映射到BTK-SH3结构域的C端,覆盖以下区域:C-ARDKNGQEEGYIPSNYVTEAEDS。此外,在存在大量ANKRD54的情况下研究了BTK的酪氨酸磷酸化,并且选择性地下调了BTK的磷酸化。我们提出了BTK的第二种新型相互作用伙伴和调节剂(论文II)14-3- 3ζ蛋白,也可以通过蛋白质组学方法进行鉴定。在这项工作中,我们已经将BTK上的相互作用位点映射到PH域中(RGRRGpS)-基序中的磷酸丝氨酸pS51和激酶域中(RHRFQpT)-基序中的磷酸苏氨酸pT495。此外,新鉴定的14-3-3抑制剂(BV02)干扰了BTK的结合,敲低14-3-3ζ的siRNA增加了BTK的核易位,而14-3-3ζ的过表达导致BTK在核周中的积累我们已经产生了ANKRD54的单个锚蛋白结构域缺失,随后表征了它们的结合能力以及它们对BTK亚细胞定位的影响(论文III)。在这项工作中,我们报告BTK的相互作用和核质穿梭需要四个锚蛋白重复中的三个。 Crm-1核出口途径的抑制对核穿梭的影响不同。快速ANKRD54与慢速BTK核积累。此外,我们已经确定BTK和ANKRD54之间的相互作用建立在核区室中。我们已将ANKRD54分类为BTK SH3结构域的主要相互作用子(论文IV)。在这项研究中,我们利用了基于完整人类“ SH3-domainome”噬菌体展示库的筛选策略,将其作为ANKRD54的可能结合靶标。目的是确定ANKRD54对SH3域文库的目标光谱和特异性,该文库包含所有296个人类SH3域。新颖的发现是BTK不仅与ANKRD54结合,而且还作为首选的相互作用物脱颖而出,在所有其他人类SH3结构域中具有较高的优势。但是,找到了其他SH3结构域相互作用的较低菌落分数候选者,但没有任何进一步的体内/体外验证。

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