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首页> 外文期刊>Biochimica et Biophysica Acta. Gene Regulatory Mechanisms >The role of SETD1A and SETD1B in development and disease
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The role of SETD1A and SETD1B in development and disease

机译:SetD1A和SetD1B在开发和疾病中的作用

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The Trithorax-related Setl H3K4 methyltransferases are conserved from yeast to human. In yeast loss of Setl causes pleiotropic effects but is compatible with life. In contrast, both mammalian Setl orthologs: SETD1A and SETD1B are essential for embryonic development, however they have distinct functions. SETD1A is required shortly after epiblast formation whereas SETD1B becomes indispensible during early organogenesis. In adult mice both SETD1A and SETD1B regulate hematopoiesis differently: SETD1A is required for the establishment of definitive hematopoiesis whereas SETD1B is important for the maintenance of long-term hematopoietic stem cells. Both are implicated in different diseases with accumulating evidence for the association of SETD1A variants in neurological disorders and SETD1B variants with cancer. Why the two paralogs cannot or only partially compensate for the loss of each other is part of the puzzle that we try to sort out in this review.
机译:将曲腹相关的Set1 H3K4甲基转移酶从酵母中保存给人。 在酵母丧失的情况下,Set1导致脂肪阶效应,但与寿命相容。 相比之下,哺乳动物Setl Orthologs:SetD1A和SetD1B都对于胚胎发育至关重要,但它们具有不同的功能。 在表集形成后不久需要SETD1A,而SETD1B在早期有机组织中变得不可或缺。 在成年小鼠中,SetD1a和Setd1b调节血液缺陷:确定确定的血缺陷所需的SetD1a,而SetD1B对于维持长期造血干细胞是重要的。 两者均涉及不同疾病,该疾病具有累积的神经疾病和癌症的SetD1B变体中SetD1A变体关联的证据。 为什么两个帕拉拉科克不能或只是部分弥补彼此的损失是我们试图在本次审查中地解决的难题的一部分。

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