一个新的管道SPICE识别新的JUN-IKZF1复合元素。

Peng Li, Sree H Pulugulla, Sonali Das, Jangsuk Oh, Rosanne Spolski, Jian-Xin Lin, Warren J Leonard
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引用次数: 0

摘要

转录因子伙伴可以协同结合DNA复合元件以增强基因转录。在这里,我们报告了一种新的蛋白质-DNA结合筛选管道,称为复合元件的间距偏好鉴定(SPICE),可以系统地预测蛋白质结合伙伴和DNA基序间距偏好。使用SPICE,我们成功鉴定了已知的复合元件,如AP1-IRF复合元件(AICEs)和STAT5四聚体,并发现了几个新的结合伙伴,包括JUN-IKZF1复合元件。在人类IL10基因的上游保守非编码区CNS9上发现了一个这样的新相互作用,该区域包含一个非规范的IKZF1结合位点。我们证实了JUN和IKZF1的协同结合,并表明在原代B细胞和T细胞中IL10 -荧光素酶报告蛋白的活性既依赖于该位点,也依赖于该复合元件中的AP1结合位点。总的来说,我们的研究结果揭示了IKZF1和AP1未被重视的全球关联,并建立了SPICE作为预测新型转录结合复合物的有价值的新管道。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A new pipeline SPICE identifies novel JUN-IKZF1 composite elements.

Transcription factor partners can cooperatively bind to DNA composite elements to augment gene transcription. Here, we report a novel protein-DNA binding screening pipeline, termed Spacing Preference Identification of Composite Elements (SPICE), that can systematically predict protein binding partners and DNA motif spacing preferences. Using SPICE, we successfully identified known composite elements, such as AP1-IRF composite elements (AICEs) and STAT5 tetramers, and also uncovered several novel binding partners, including JUN-IKZF1 composite elements. One such novel interaction was identified at CNS9, an upstream conserved noncoding region in the human IL10 gene, which harbors a non-canonical IKZF1 binding site. We confirmed cooperative binding of JUN and IKZF1 and showed that the activity of an IL10 -luciferase reporter construct in primary B and T cells depended on both this site and the AP1 binding site within this composite element. Overall, our findings reveal an unappreciated global association of IKZF1 and AP1 and establish SPICE as a valuable new pipeline for predicting novel transcription binding complexes.

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