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Update of human and mouse forkhead box (FOX) gene families

机译:人和老鼠的叉头盒(FOX)基因家族的更新

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The forkhead box (FOX) proteins are transcription factors that play complex and important roles in processes from development and organogenesis to regulation of metabolism and the immune system. There are 50 FOX genes in the human genome and 44 in the mouse, divided into 19 subfamilies. All human FOX genes have close mouse orthologues, with one exception: the mouse has a single Foxd4 , whereas the human gene has undergone a recent duplication to a total of seven ( FOXD4 and FOXD4L1 → FOXD4L6 ). Evolutionarily ancient family members can be found as far back as the fungi and metazoans. The DNA-binding domain, the forkhead domain, is an example of the winged-helix domain, and is very well conserved across the FOX family and across species, with a few notable exceptions in which divergence has created new functionality. Mutations in FOX genes have been implicated in at least four familial human diseases, and differential expression may play a role in a number of other pathologies -- ranging from metabolic disorders to autoimmunity. Furthermore, FOX genes are differentially expressed in a large number of cancers; their role can be either as an oncogene or tumour suppressor, depending on the family member and cell type. Although some drugs that target FOX gene expression or activity, notably proteasome inhibitors, appear to work well, much more basic research is needed to unlock the complex interplay of upstream and downstream interactions with FOX family transcription factors.
机译:叉头盒(FOX)蛋白是转录因子,在从发育和器官发生到代谢和免疫系统调节的过程中起着复杂而重要的作用。人类基因组中有50个FOX基因,小鼠中有44个,分为19个亚家族。所有人类FOX基因都具有紧密的小鼠直系同源基因,只有一个例外:小鼠只有一个Foxd4,而人类基因最近经历了重复,总共重复了7次(FOXD4和FOXD4L1→FOXD4L6)。进化上古老的家庭成员可以追溯到真菌和后生动物。 DNA结合结构域,即叉头结构域,是有翼螺旋结构域的一个实例,在FOX家族和整个物种中都非常保守,但有一些值得注意的例外,即差异创造了新的功能。 FOX基因的突变与至少四种家族性人类疾病有关,差异表达可能在许多其他疾病中起作用,从代谢疾病到自身免疫。此外,FOX基因在多种癌症中差异表达。它们的作用可以是癌基因或抑癌基因,具体取决于家族成员和细胞类型。尽管一些靶向FOX基因表达或活性的药物,尤其是蛋白酶体抑制剂,似乎可以很好地发挥作用,但仍需要更多基础研究来揭示上游和下游与FOX家族转录因子相互作用的复杂相互作用。

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