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Linking Epigenetics to Human Disease and Rett Syndrome: The Emerging Novel and Challenging Concepts in MeCP2 Research

机译:将表观遗传学与人类疾病和Rett综合征联系起来:MeCP2研究中的新兴小说和具有挑战性的概念

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摘要

Epigenetics refer to inheritable changes beyond DNA sequence that control cell identity and morphology. Epigenetics play key roles in development and cell fate commitments and highly impact the etiology of many human diseases. A well-known link between epigenetics and human disease is the X-linked MECP2 gene, mutations in which lead to the neurological disorder, Rett Syndrome. Despite the fact that MeCP2 was discovered about 20 years ago, our current knowledge about its molecular function is not comprehensive. While MeCP2 was originally found to bind methylated DNA and interact with repressor complexes to inhibit and silence its genomic targets, recent studies have challenged this idea. Indeed, depending on its interacting protein partners and target genes, MeCP2 can act either as an activator or as a repressor. Furthermore, it is becoming evident that although Rett Syndrome is a progressive and postnatal neurological disorder, the consequences of MeCP2 deficiencies initiate much earlier and before birth. To comprehend the novel and challenging concepts in MeCP2 research and to design effective therapeutic strategies for Rett Syndrome, a targeted collaborative effort from scientists in multiple research areas to clinicians is required.
机译:表观遗传学是指控制细胞身份和形态的DNA序列以外的可遗传变化。表观遗传学在发育和细胞命运承诺中起着关键作用,并在很大程度上影响着许多人类疾病的病因。表观遗传学和人类疾病之间的一个众所周知的联系是X连锁的MECP2基因,这种突变会导致神经系统疾病瑞特综合症。尽管MeCP2大约在20年前被发现,但我们目前对其分子功能的了解还不全面。虽然最初发现MeCP2与甲基化DNA结合并与阻遏物复合物相互作用以抑制和沉默其基因组靶标,但最近的研究对这一想法提出了挑战。实际上,MeCP2取决于其相互作用的蛋白质伴侣和靶基因,可以充当激活剂或阻遏物。此外,越来越明显的是,尽管Rett综合征是一种进行性和出生后的神经系统疾病,但MeCP2缺乏症的后果在出生之前和出生之前就开始了。为了理解MeCP2研究中的新颖和具有挑战性的概念,并设计有效的Rett综合征治疗策略,需要多个研究领域的科学家与临床医生进行有针对性的合作。

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