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甲状腺转录因子1挽救了因具有显性负性活性的天然PAX8配对结构域突变而受损的PAX8/p300协同作用。

Thyroid transcription factor 1 rescues PAX8/p300 synergism impaired by a natural PAX8 paired domain mutation with dominant negative activity.

作者信息

Grasberger Helmut, Ringkananont Usanee, Lefrancois Paule, Abramowicz Marc, Vassart Gilbert, Refetoff Samuel

机构信息

The University of Chicago, MC3090, 5841 South Maryland Avenue, Chicago, IL 60637, USA.

出版信息

Mol Endocrinol. 2005 Jul;19(7):1779-91. doi: 10.1210/me.2004-0426. Epub 2005 Feb 17.

Abstract

Mutations in the paired domain transcription factor PAX8 are a rare cause of congenital hypothyroidism due to thyroid dysgenesis. We identified a novel and unique PAX8 mutation segregating in seven affected members of a three-generations family. The mutation replaces an invariant serine residue within helix 2 of the paired DNA-binding domain for phenylalanine. The mutant protein (PAX8-S48F) does not induce the thyroglobulin promoter in nonthyroid cells, but displays almost half of wild-type PAX8 activity in thyroid cells. PAX8-S48F shows no defect in expression, nuclear targeting, or DNA binding and retains the ability to synergize with thyroid transcription factor 1 (TTF-1, NKX2.1). However, we found that in nonthyroid cells, the acetylation-independent synergism with the general transcriptional adaptor p300 is completely abrogated, suggesting that PAX8-S48F may be unable to efficiently recruit p300. Reconstitution experiments in nonthyroid cells reveal that TTF-1 can partially rescue PAX8-S48F/p300 synergism and thus reproduce the situation in thyroid cells. These functional characteristics result in a dominant negative effect of PAX8-S48F on coexpressed wild-type PAX8 activity, which is not observed in paired domain mutations with DNA binding defect. Our results describe the first dominant negative missense mutation in a paired domain and provide evidence for a crucial role of the p300 coactivator in mediating the functional synergism between PAX8 and TTF-1 in thyroid-specific gene expression.

摘要

配对结构域转录因子PAX8的突变是甲状腺发育不全导致先天性甲状腺功能减退的罕见原因。我们在一个三代家族的七名患病成员中发现了一个新的独特PAX8突变。该突变将配对DNA结合结构域螺旋2内的一个不变丝氨酸残基替换为苯丙氨酸。突变蛋白(PAX8-S48F)在非甲状腺细胞中不诱导甲状腺球蛋白启动子,但在甲状腺细胞中显示出近一半的野生型PAX8活性。PAX8-S48F在表达、核定位或DNA结合方面没有缺陷,并保留了与甲状腺转录因子1(TTF-1,NKX2.1)协同作用的能力。然而,我们发现,在非甲状腺细胞中,与一般转录衔接子p300的不依赖乙酰化的协同作用完全被消除,这表明PAX8-S48F可能无法有效地募集p300。非甲状腺细胞中的重建实验表明,TTF-1可以部分挽救PAX8-S48F/p300的协同作用,从而重现甲状腺细胞中的情况。这些功能特性导致PAX8-S48F对共表达的野生型PAX8活性产生显性负效应,这在具有DNA结合缺陷的配对结构域突变中未观察到。我们的结果描述了配对结构域中的第一个显性负错义突变,并为p300共激活因子在介导PAX8和TTF-1在甲状腺特异性基因表达中的功能协同作用中的关键作用提供了证据。

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