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曼氏血吸虫新型核受体共激活因子SmNCoA-62的克隆:与SmRXR1/SmNR1异二聚体、SmGCN5和SmCBP1形成复合物

Cloning of SmNCoA-62, a novel nuclear receptor co-activator from Schistosoma mansoni: assembly of a complex with a SmRXR1/SmNR1 heterodimer, SmGCN5 and SmCBP1.

作者信息

Fantappié Marcelo Rosado, Bastos de Oliveira Francisco Meirelles, de Moraes Maciel Renata, Rumjanek Franklin David, Wu Wenjie, Loverde Philip T

机构信息

Southwest Foundation for Biomedical Research, Department of Virology and Immunology, PO Box 78245-0594, San Antonio, TX, USA.

出版信息

Int J Parasitol. 2008 Aug;38(10):1133-47. doi: 10.1016/j.ijpara.2008.02.003. Epub 2008 Feb 21.

Abstract

The Schistosoma mansoni nuclear receptors (NR) SmRXR1 and SmNR1 have recently been shown to form a heterodimer and to bind to canonic hormone response DNA elements. Recruitment of co-regulatory proteins to NRs is required for their transcriptional and biological activities. Here, we cloned a novel S. mansoni NR co-activator, SmNCoA-62. SmNCoA-62 is highly homologous to the human Vitamin D receptor co-activator NCoA62/SKIP. SmNCoA-62 contains the SNW nuclear receptor interaction domain and a putative C-terminus transactivation domain. By using in vitro pull-down assays, we fully mapped the interaction domains of S. mansoni NR co-activators, SmNCoA-62, SmGCN5 and SmCBP1 with SmRXR1 and SmNR1, as well as the domains that mediate interactions amongst the co-activators themselves. By mutagenesis analysis, we showed that SmCBP1 LxxLL motif 2 and LxxLL motif 3, but not LxxLL motif 1, were essential to mediate the interactions of SmCBP1 with the EF domains of SmRXR1 and SmNR1. Histone acetyltransferases SmGCN5 and SmCBP1 specifically acetylated the C/D domains of SmRXR1 and SmNR1. In addition, two acetylation sites of SmNR1 were identified. SmGCN5 and SmCBP1 also acetylated SmNCoA-62 but with significant differences in their acetylation activities. Using gel shift analysis, we were able to demonstrate, in vitro, the assembly of the co-activators on the SmRXR1/SmNR1 heterodimer bound to DNA. LxxLL motifs 2 and 3 of SmCBP1 seemed to play a crucial role for the assembly of the co-activators to the DNA-bound SmRXR1/SmNR1 heterodimer.

摘要

曼氏血吸虫核受体(NR)SmRXR1和SmNR1最近被证明可形成异源二聚体,并与典型的激素反应DNA元件结合。核受体招募共调节蛋白是其转录和生物学活性所必需的。在此,我们克隆了一种新型的曼氏血吸虫NR共激活因子SmNCoA-62。SmNCoA-62与人维生素D受体共激活因子NCoA62/SKIP高度同源。SmNCoA-62包含SNW核受体相互作用结构域和一个推定的C端反式激活结构域。通过体外下拉试验,我们全面绘制了曼氏血吸虫NR共激活因子SmNCoA-62、SmGCN5和SmCBP1与SmRXR1和SmNR1的相互作用结构域,以及介导共激活因子自身之间相互作用的结构域。通过诱变分析,我们表明SmCBP1的LxxLL基序2和LxxLL基序3而非LxxLL基序1对于介导SmCBP1与SmRXR1和SmNR1的EF结构域之间的相互作用至关重要。组蛋白乙酰转移酶SmGCN5和SmCBP1特异性地使SmRXR1和SmNR1的C/D结构域乙酰化。此外,还鉴定出SmNR1的两个乙酰化位点。SmGCN5和SmCBP1也使SmNCoA-62乙酰化,但它们的乙酰化活性存在显著差异。使用凝胶迁移分析,我们能够在体外证明共激活因子在与DNA结合的SmRXR1/SmNR1异源二聚体上的组装。SmCBP1的LxxLL基序2和3似乎在共激活因子组装到与DNA结合的SmRXR1/SmNR1异源二聚体过程中起关键作用。

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