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东方牡蛎(Crassostrea virginica)中两种缺氧感应途径关键酶的分子特征和 mRNA 表达:缺氧诱导因子α(HIF-α)和 HIF-脯氨酰羟化酶(PHD)。

Molecular characterization and mRNA expression of two key enzymes of hypoxia-sensing pathways in eastern oysters Crassostrea virginica (Gmelin): hypoxia-inducible factor α (HIF-α) and HIF-prolyl hydroxylase (PHD).

机构信息

Department of Biological Sciences, Kent State University, OH 44242-0001, USA.

出版信息

Comp Biochem Physiol Part D Genomics Proteomics. 2011 Jun;6(2):103-14. doi: 10.1016/j.cbd.2010.10.003. Epub 2010 Oct 30.

Abstract

Oxygen homeostasis is crucial for development, survival and normal function of all metazoans. A family of transcription factors called hypoxia-inducible factors (HIF) is critical in mediating the adaptive responses to reduced oxygen availability. The HIF transcription factor consists of a constitutively expressed β subunit and an oxygen-dependent α subunit; the abundance of the latter determines the activity of HIF and is regulated by a family of O(2)- and Fe(2+)-dependent enzymes prolyl hydroxylases (PHDs). Currently very little is known about the function of this important pathway and the molecular structure of its key players in hypoxia-tolerant intertidal mollusks including oysters, which are among the animal champions of anoxic and hypoxic tolerance and thus can serve as excellent models to study the role of HIF cascade in adaptations to oxygen deficiency. We have isolated transcripts of two key components of the oxygen sensing pathway - the oxygen-regulated HIF-α subunit and PHD - from an intertidal mollusk, the eastern oyster Crassostrea virginica, and determined the transcriptional responses of these two genes to anoxia, hypoxia and cadmium (Cd) stress. HIF-α and PHD homologs from eastern oysters C. virginica show significant sequence similarity and share key functional domains with the earlier described isoforms from vertebrates and invertebrates. Phylogenetic analysis shows that genetic diversification of HIF and PHD isoforms occurred within the vertebrate lineage indicating functional diversification and specialization of the oxygen-sensing pathways in this group, which parallels situation observed for many other important genes. HIF-α and PHD homologs are broadly expressed at the mRNA level in different oyster tissues and show transcriptional responses to prolonged hypoxia in the gills consistent with their putative role in oxygen sensing and the adaptive response to hypoxia. Similarity in amino acid sequence, domain structure and transcriptional responses between HIF-α and PHD homologs from oysters and other invertebrate and vertebrate species implies the highly conserved functions of these genes throughout the evolutionary history of animals, in accordance with their critical role in oxygen sensing and homeostasis.

摘要

氧稳态对于所有后生动物的发育、生存和正常功能至关重要。一类称为缺氧诱导因子(HIF)的转录因子在介导对低氧供应的适应性反应中起着关键作用。HIF 转录因子由一个组成型表达的β亚基和一个氧依赖性的α亚基组成;后者的丰度决定了 HIF 的活性,并受一系列 O(2)和 Fe(2+)依赖性酶脯氨酰羟化酶(PHD)的调节。目前,人们对这条重要途径的功能以及包括牡蛎在内的耐缺氧潮间带软体动物中其关键分子结构知之甚少,牡蛎是耐缺氧和低氧的动物冠军之一,因此可以作为研究 HIF 级联在适应缺氧中的作用的优秀模型。我们从一种潮间带软体动物,东方牡蛎 Crassostrea virginica 中分离出了氧感应途径的两个关键组成部分的转录本——氧调节的 HIF-α亚基和 PHD,并确定了这两个基因对缺氧、低氧和镉(Cd)胁迫的转录响应。东方牡蛎 C. virginica 的 HIF-α和 PHD 同源物具有显著的序列相似性,并与先前描述的脊椎动物和无脊椎动物的同工型共享关键功能域。系统发育分析表明,HIF 和 PHD 同工型的遗传多样性发生在脊椎动物谱系内,表明该组中的氧感应途径发生了功能多样化和专业化,这与许多其他重要基因的情况相似。HIF-α和 PHD 同源物在不同的牡蛎组织中以 mRNA 水平广泛表达,并在鳃中对长时间的低氧表现出转录响应,这与其在氧感应和对低氧的适应性反应中的潜在作用一致。牡蛎和其他无脊椎动物和脊椎动物物种的 HIF-α和 PHD 同源物在氨基酸序列、结构域结构和转录响应方面的相似性表明,这些基因在动物的进化历史中具有高度保守的功能,符合它们在氧感应和稳态中的关键作用。

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