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Specificity of Pitx3-Dependent Gene Regulatory Networks in Subsets of Midbrain Dopamine Neurons

机译:中脑多巴胺神经元子集中PITX3依赖性基因监管网络的特异性

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Abstract Dysfunction of midbrain dopaminergic (mDA) neurons is involved in Parkinson’s disease (PD) and neuropsychiatric disorders. Pitx3 is expressed in mDA neuron subsets of the substantia nigra compacta (SNc) and of the ventral tegmental area (VTA) that are degeneration-sensitive in PD. The genetic network(s) and mode(s) of action of Pitx3 in these mDA neurons remain poorly characterized. We hypothesized that, given their distinct neuronal identities, Pitx3-expressing neurons of SNc and VTA should differ in their Pitx3-controlled gene expression networks and this may involve subset-specific co-regulators. Expression profiling of purified mDA neuronal subsets indicates that Pitx3 regulates different sets of genes in SNc and VTA, such as activating the expression of primary cilium gene products specifically in VTA neurons. Interaction network analysis pointed to the participation of differentially expressed Lhx/Lmo family members in the modulation of Pitx3 action in SNc and VTA mDA neurons. Conversely, global binding patterns of Pitx3 on genomic DNA of human dopaminergic cells revealed that Pitx3 is often co-recruited to regions that foster the formation of GATA-bHLH-BRN complexes, which usually involve Lmo co-regulatory proteins. We focused on Lmo3 for its preferential expression in SNc neurons and demonstrated that it functions as a transcriptional co-activator of Pitx3 by enhancing its activity on genomic regulatory elements. In summary, we defined the SN and VTA-specific programs of Pitx3-dependent gene expression and identified Lmo3 as a SN-specific co-regulator of Pitx3-dependent transcription.
机译:摘要中脑多巴胺能(MDA)神经元的功能障碍参与帕金森病(Pd)和神经精神疾病。 pitX3在ImpliaIa nigra Compacta(SNC)的MDA神经元亚组中,腹侧引物区域(VTA)中的腹部群(VTA)表达。在这些MDA神经元中pitX3的遗传网络和模式的作用仍然很差。我们假设,鉴于其不同的神经元相同,SNC和VTA的表达性神经元应在其PITX3控制的基因表达网络中不同,这可能包括特定的特定的共调节剂。纯化的MDA神经元子集的表达分析表明PITX3调节SNC和VTA中的不同基因,例如在VTA神经元中的激活特异性纤毛基因产物的表达。相互作用网络分析指出差异表达的LHX / LMO系列成员在SNC和VTA MDA神经元中PITX3作用调节中的参与。相反,PITX3对人多巴胺能细胞基因组DNA的全局结合模式显示,PITX3通常共募集到培养GATA-BHLH-BRN复合物的形成,这通常涉及LMO共调节蛋白。我们专注于LMO3在SNC神经元中的优先表达,并证明它通过增强其对基因组调节元件的活性来作为PITX3的转录共激活剂。总之,我们定义了PITX3依赖性基因表达的SN和VTA特异性程序,并将LMO3鉴定为PITX3依赖性转录的SN特异性共调节剂。

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