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首页> 外文期刊>Journal of Molecular Endocrinology >Imprinted genes and hypothalamic function
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Imprinted genes and hypothalamic function

机译:印迹基因和下丘脑功能

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Genomic imprinting is an important and enigmatic form of gene regulation in mammals in which one copy of a gene is silenced in a manner determined by its parental history. Imprinted genes range from those with constitutive monoallelic silencing to those, typically more remote from imprinting control regions, that display developmentally regulated, tissue-specific or partial monoallelic expression. This diversity may make these genes, and the processes they control, more or less sensitive to factors that modify or disrupt epigenetic marks. Imprinted genes have important functions in development and physiology, including major endocrineeuroendocrine axes. Owing to is central role in coordinating growth, metabolism and reproduction, as well as evidence from genetic and knockout studies, the hypothalamus may be a focus for imprinted gene action. Are there unifying principles that explain why a gene should be imprinted? Conflict between parental genomes over limiting maternal resources, but also co-adaptation between mothers and offspring, have been invoked to explain the evolution of imprinting. Recent reports suggest there may be many more genes imprinted in the hypothalamus than hitherto expected, and it will be important for these new candidates to be validated and to determine whether they conform to current notions of how imprinting is regulated. In fully evaluating the role of imprinted genes in the hypothalamus, much work needs to be done to identify the specific neuronal populations in which particular genes are expressed, establish whether there are pathways in common and whether imprinted genes are involved in long-term programming of hypothalamic functions.
机译:基因组印记是哺乳动物中一种重要且神秘的基因调控形式,其中一个基因的一个拷贝以其亲代史决定的方式沉默。印迹基因的范围从具有组成性单等位基因沉默的基因到那些通常更远离印迹控制区的基因,这些基因显示出发育调控的,组织特异性或部分单等位基因的表达。这种多样性可能会使这些基因及其控制的过程对修饰或破坏表观遗传标记的因素或多或少敏感。印迹基因在发育和生理中具有重要功能,包括主要的内分泌/神经内分泌轴。由于下丘脑在协调生长,代谢和繁殖以及遗传和基因敲除研究的证据中起着中心作用,因此下丘脑可能成为印迹基因作用的焦点。是否有统一的原理来解释为什么要印迹基因?父母基因组之间由于限制母体资源而发生的冲突,以及母亲与后代之间的共同适应,都被用来解释印迹的演变。最近的报道表明,下丘脑中印记的基因可能比迄今预期的要多,因此对这些新候选者进行验证并确定它们是否符合对印记如何调控的现行观念将至关重要。在充分评估印记基因在下丘脑中的作用时,需要做大量工作来鉴定表达特定基因的特定神经元群体,确定是否存在共同的途径,以及印记基因是否参与了对下丘脑的长期编程。下丘脑功能。

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