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TBX22 Missense Mutations Found in Patients with X-Linked Cleft Palate Affect DNA Binding, Sumoylation, and Transcriptional Repression

机译:X连锁裂Pal裂患者发现的TBX22错义突变影响DNA结合,糖化和转录抑制。

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摘要

The T-box transcription factor TBX22 is essential for normal craniofacial development, as demonstrated by the finding of nonsense, frameshift, splice-site, or missense mutations in patients with X-linked cleft palate (CPX) and ankyloglossia. To better understand the function of TBX22, we studied 10 different naturally occurring missense mutations that are phenotypically equivalent to loss-of-function alleles. Since all missense mutations are located in the DNA-binding T-box domain, we first investigated the preferred recognition sequence for TBX22. Typical of T-box proteins, the resulting sequence is a palindrome based around near-perfect copies of AGGTGTGA. DNA-binding assays indicate that missense mutations at or near predicted contact points with the DNA backbone compromise stable DNA-protein interactions. We show that TBX22 functions as a transcriptional repressor and that TBX22 missense mutations result in impaired repression activity. No effect on nuclear localization of TBX22 was observed. We find that TBX22 is a target for the small ubiquitin-like modifier SUMO-1 and that this modification is required for TBX22 repressor activity. Although the site of SUMO attachment at the lysine at position 63 is upstream of the T-box domain, loss of SUMO-1 modification is consistently found in all pathogenic CPX missense mutations. This implies a general mechanism linking the loss of SUMO conjugation to the loss of TBX22 function. Orofacial clefts are well known for their complex etiology and variable penetrance, involving both genetic and environmental risk factors. The sumoylation process is also subject to and profoundly affected by similar environmental stresses. Thus, we suggest that SUMO modification may represent a common pathway that regulates normal craniofacial development and is involved in the pathogenesis of both Mendelian and idiopathic forms of orofacial clefting.
机译:T-box转录因子TBX22对于正常颅面发育至关重要,正如X连锁裂left(CPX)和强直症患者的无意义,移码,剪接位点或错义突变的发现所证明的。为了更好地了解TBX22的功能,我们研究了10种不同的自然发生的错义突变,这些突变在表型上等同于功能丧失的等位基因。由于所有错义突变均位于结合DNA的T-box结构域中,因此我们首先研究了TBX22的首选识别序列。典型的T-box蛋白序列是基于AGGTGTGA的近乎完美拷贝的回文序列。 DNA结合测定表明,在与DNA骨架的预期接触点处或附近的错义突变会破坏稳定的DNA-蛋白质相互作用。我们表明,TBX22充当转录阻遏物,并且TBX22错义突变导致受损的抑制活性。没有观察到对TBX22的核定位的影响。我们发现TBX22是小的泛素样修饰剂SUMO-1的靶标,并且该修饰是TBX22阻遏物活性所必需的。尽管SUMO在赖氨酸位置63处的附着位点位于T-box域的上游,但在所有致病性CPX错义突变中始终发现SUMO-1修饰缺失。这意味着将SUMO共轭损失与TBX22功能损失联系起来的一般机制。口面部c裂以其复杂的病因和外露率而闻名,涉及遗传和环境风险因素。合成过程也受到类似环境压力的影响,并受到深刻影响。因此,我们建议SUMO修饰可能代表调节正常颅面发育并参与孟德尔和特发性口腔裂的发病机制的共同途径。

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