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Phosphorylation-induced Conformational Ensemble Switching in an Intrinsically Disordered Cancer/Testis Antigen

机译:磷酸化诱导的构象整合转换在固有的癌症/睾丸抗原中。

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摘要

Prostate-associated gene 4 (PAGE4) is an intrinsically disordered cancer/testis antigen that is up-regulated in the fetal and diseased human prostate. Knocking down PAGE4 expression results in cell death, whereas its overexpression leads to a growth advantage of prostate cancer cells (Zeng, Y., He, Y., Yang, F., Mooney, S. M., Getzenberg, R. H., Orban, J., and Kulkarni, P. (2011) The cancer/testis antigen prostate-associated gene 4 (PAGE4) is a highly intrinsically disordered protein. J. Biol. Chem. 286, 13985–13994). Phosphorylation of PAGE4 at Thr-51 is critical for potentiating c-Jun transactivation, an important factor in controlling cell growth, apoptosis, and stress response. Using NMR spectroscopy, we show that the PAGE4 polypeptide chain has local and long-range conformational preferences that are perturbed by site-specific phosphorylation at Thr-51. The population of transient turn-like structures increases upon phosphorylation in an ∼20-residue acidic region centered on Thr-51. This central region therefore becomes more compact and more negatively charged, with increasing intramolecular contacts to basic sequence motifs near the N and C termini. Although flexibility is decreased in the central region of phospho-PAGE4, the polypeptide chain remains highly dynamic overall. PAGE4 utilizes a transient helical structure adjacent to the central acidic region to bind c-Jun with low affinity in vitro. The binding interaction is attenuated by phosphorylation at Thr-51, most likely because of masking the effects of the more compact phosphorylated state. Therefore, phosphorylation of PAGE4 leads to conformational shifts in the dynamic ensemble, with large functional consequences. The changes in the structural ensemble induced by posttranslational modifications are similar conceptually to the conformational switching events seen in some marginally stable (“metamorphic”) folded proteins in response to mutation or environmental triggers.
机译:前列腺相关基因4(PAGE4)是一种内在失调的癌症/睾丸抗原,在胎儿和患病的人类前列腺中上调。降低PAGE4的表达会导致细胞死亡,而过表达会导致前列腺癌细胞的生长优势(Zeng,Y.,He,Y.,Yang,F.,Mooney,SM,Getzenberg,RH,Orban,J., Kulkarni,P.和Kulkarni,P.(2011)癌症/睾丸抗原前列腺相关基因4(PAGE4)是一种高度内在失调的蛋白质(J. Biol。Chem。286,13985-13994)。 PAGE4在Thr-51处的磷酸化对于增强c-Jun反式激活至关重要,这是控制细胞生长,凋亡和应激反应的重要因素。使用核磁共振光谱,我们显示PAGE4多肽链具有局部和远程构象的喜好,这受到Thr-51处的位点特异性磷酸化的干扰。在以Thr-51为中心的约20个残基的酸性区域进行磷酸化作用后,瞬时匝状结构的数量增加。因此,随着与N和C末端附近的基本序列基序的分子内接触增加,该中心区域变得更紧凑并且带更多负电荷。尽管在磷酸-PAGE4的中心区域中柔性降低,但是多肽链总体上保持高度动态。 PAGE4利用邻近中心酸性区域的瞬时螺旋结构在体外以低亲和力结合c-Jun。结合相互作用在Thr-51处被磷酸化减弱,这很可能是由于掩盖了更紧密的磷酸化状态的影响。因此,PAGE4的磷酸化会导致动态集合中的构象变化,并产生较大的功能后果。由翻译后修饰引起的结构整体的变化在概念上类似于响应突变或环境触发而在一些边缘稳定的(“变形”)折叠蛋白中看到的构象转换事件。

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