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缺氧诱导因子-1在凡纳滨对虾缺氧期间对磷酸果糖激酶和果糖1,6-二磷酸酶表达的作用

Role of HIF-1 on phosphofructokinase and fructose 1, 6-bisphosphatase expression during hypoxia in the white shrimp Litopenaeus vannamei.

作者信息

Cota-Ruiz Keni, Leyva-Carrillo Lilia, Peregrino-Uriarte Alma B, Valenzuela-Soto Elisa M, Gollas-Galván Teresa, Gómez-Jiménez Silvia, Hernández Jesús, Yepiz-Plascencia Gloria

机构信息

Centro de Investigación en Alimentación y Desarrollo, A.C., P.O. Box 1735, Carretera a Ejido La Victoria Km. 0.6 Hermosillo, Sonora 83304, México.

Centro de Investigación en Alimentación y Desarrollo, A.C., P.O. Box 1735, Carretera a Ejido La Victoria Km. 0.6 Hermosillo, Sonora 83304, México.

出版信息

Comp Biochem Physiol A Mol Integr Physiol. 2016 Aug;198:1-7. doi: 10.1016/j.cbpa.2016.03.015. Epub 2016 Mar 29.

Abstract

HIF-1 is a transcription factor that controls a widespread range of genes in metazoan organisms in response to hypoxia and is composed of α and β subunits. In shrimp, phosphofructokinase (PFK) and fructose bisphosphatase (FBP) are up-regulated in hypoxia. We hypothesized that HIF-1 is involved in the regulation of PFK and FBP genes in shrimp hepatopancreas under hypoxia. Long double stranded RNA (dsRNA) intramuscular injection was utilized to silence simultaneously both HIF-1 subunits, and then, we measured the relative expression of PFK and FBP, as well as their corresponding enzymatic activities in hypoxic shrimp hepatopancreas. The results indicated that HIF-1 participates in the up-regulation of PFK transcripts under short-term hypoxia since the induction caused by hypoxia (~1.6 and ~4.2-fold after 3 and 48h, respectively) is significantly reduced in the dsRNA animals treated. Moreover, PFK activity was significantly ~2.8-fold augmented after 3h in hypoxia alongside to an ~1.9-fold increment in lactate. However, when animals were dsRNA treated, both were significantly reduced. On the other hand, FBP transcripts were ~5.3-fold up-regulated in long-term hypoxic conditions (48h). HIF-1 is involved in this process since FBP transcripts were not induced by hypoxia when HIF-1 was silenced. Conversely, the FBP activity was not affected by hypoxia, which suggests its possible regulation at post-translational level. Taken together, these results position HIF-1 as a prime transcription factor in coordinating glucose metabolism through the PFK and FBP genes among others, in shrimp under low oxygen environments.

摘要

缺氧诱导因子-1(HIF-1)是一种转录因子,可响应缺氧情况控制后生动物体内广泛的基因,由α和β亚基组成。在虾类中,磷酸果糖激酶(PFK)和果糖双磷酸酶(FBP)在缺氧状态下会上调。我们推测HIF-1参与了缺氧状态下虾肝胰腺中PFK和FBP基因的调控。通过肌肉注射长双链RNA(dsRNA)来同时沉默HIF-1的两个亚基,然后,我们测量了缺氧虾肝胰腺中PFK和FBP的相对表达及其相应的酶活性。结果表明,HIF-1参与了短期缺氧条件下PFK转录本的上调,因为在经dsRNA处理的动物中,缺氧诱导作用(分别在3小时和48小时后诱导约1.6倍和约4.2倍)显著降低。此外,缺氧3小时后PFK活性显著增加约2.8倍,并伴随着乳酸增加约1.9倍。然而,当动物经dsRNA处理后,两者均显著降低。另一方面,在长期缺氧条件下(48小时)FBP转录本上调约5.3倍。HIF-1参与了这一过程,因为当HIF-1沉默时,FBP转录本不会被缺氧诱导。相反,FBP活性不受缺氧影响,这表明其可能在翻译后水平受到调控。综上所述,这些结果表明HIF-1是低氧环境下虾通过PFK和FBP等基因协调葡萄糖代谢的主要转录因子。

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