首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Characterisation of capn1, capn2-like, capn3 and capn11 genes in Atlantic halibut (Hippoglossus hippoglossus L.): Transcriptional regulation across tissues and in skeletal muscle at distinct nutritional states.
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Characterisation of capn1, capn2-like, capn3 and capn11 genes in Atlantic halibut (Hippoglossus hippoglossus L.): Transcriptional regulation across tissues and in skeletal muscle at distinct nutritional states.

机译:大西洋大比目鱼(Hippoglossus hippoglossus L.)中capn1,capn2,capn3和capn11基因的特征:在不同营养状态下,整个组织和骨骼肌的转录调控。

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摘要

The typical calpain proteases are a subset of a wider superfamily and regulate a broad spectrum of physiological processes. Here we characterised Atlantic halibut complete-coding orthologues of calpain-1, calpain-2-like, "muscle-specific" calpain-3, plus calpain-11, a recently recognised vertebrate-wide family member. Phylogenetic analysis established the relationship of each sequence within a comprehensive framework of vertebrate calpains, including teleost paralogues. This approach provided significant insight into the evolution of teleost calpains. For example, teleost sequences considered calpain-2 orthologues formed a monophyletic clade external to sister clades for tetrapod calpain-2 and vertebrate calpain-8. Thus, teleost "calpain-2" is likely not directly orthologous to tetrapod calpain-2 and represents a calpain-2-like protein. The characteristic domain structure of typical calpains was observed in each halibut sequence, although calpain-3, as for other teleosts, retained only one (IS2) of three further domains found in human calpain-3 (NS, IS1 and IS2). Transcripts for capn1, capn2-like and capn11 were widely detected across eleven halibut tissues, whereas capn3 was detected in striated muscles, spleen and ovary, but absent or relatively less abundant in other tissues. We assessed the transcript expression of each calpain gene in fast-twitch skeletal muscle where nutritional state was altered with 60days feed restriction, followed by 60days satiation refeeding. Measured by quantitative real-time PCR, capn1 transcript levels were highest during maximal fasting and then steadily decreased with refeeding, where muscle was in net positive protein balance. Conversely capn2-like showed little response, whereas capn3 and capn11 transcript levels were lowest at maximal fasting before being strongly constitutively upregulated with subsequent refeeding. Halibut capn3 transcript abundance was on average 6.5, 23.7 and 5.9 fold greater than capn1, capn2-like and capn11 respectively in skeletal muscle across nutritional states. In turn, transcript levels of capn1 and capn11 were invariably higher than capn2-like, but were dependent on nutritional state compared to each other. The differential regulation of these genes in response to nutritional status suggests distinct roles for typical calpain family members in regulating the balance between catabolism and growth in teleost skeletal muscle.
机译:典型的钙蛋白酶蛋白酶是更广泛的超家族的子集,并调节广泛的生理过程。在这里,我们描述了calpain-1,calpain-2样,“肌肉特有的” calpain-3,以及最近公认的整个脊椎动物家族成员calpain-11的大西洋大比目鱼完整编码直向同源物。系统发生分析建立了脊椎动物钙蛋白酶,包括硬骨鱼类旁系同源物的全面框架内的每个序列的关系。这种方法为硬骨钙蛋白酶的进化提供了重要的见识。例如,硬骨鱼序列被认为是钙蛋白酶2直向同源物,在四足钙蛋白酶2和脊椎动物钙蛋白酶8的姐妹进化枝之外形成了单系进化枝。因此,硬骨鱼“ calpain-2”可能与四足动物calpain-2并非直接直系同源,并且代表calpain-2-like蛋白。在每个大比目鱼序列中均观察到典型钙蛋白酶的特征结构域结构,尽管钙蛋白酶3与其他硬骨鱼一样,仅保留了人钙蛋白酶3的三个其他结构域(NS,IS1和IS2)中的一个(IS2)。在11个大比目鱼组织中广泛检测到capn1,capn2和capn11的转录本,而capn3在横纹肌,脾脏和卵巢中检测到,但在其他组织中则缺少或相对较少。我们评估了快速钙化骨骼肌中每个钙蛋白酶基因的转录本表达,该骨骼肌的营养状态随着60天限饲而改变,随后60天饱食又改变了营养状态。通过定量实时PCR测量,capn1转录水平在最大禁食期间最高,然后随着进食而稳定下降,此时肌肉处于净阳性蛋白质平衡状态。相反,类似capn2的反应几乎没有反应,而capn3和capn11的转录水平在最大禁食时最低,随后在随后的进食中被强烈地上调。在营养状态下,骨骼肌中大比目鱼capn3的转录丰度分别平均比capn1,capn2样和capn11大6.5、23.7和5.9倍。反过来,capn1和capn11的转录水平始终高于类似capn2的水平,但彼此之间的营养状况却各不相同。这些基因响应营养状况的差异调节表明典型的钙蛋白酶家族成员在调节硬骨骨骼肌分解代谢与生长之间的平衡方面具有独特的作用。

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