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首页> 外文期刊>Reproduction, fertility, and development >Shift from slow- to fast-twitch muscle fibres in skeletal muscle of newborn heterozygous and homozygous myostatin-knockout piglets
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Shift from slow- to fast-twitch muscle fibres in skeletal muscle of newborn heterozygous and homozygous myostatin-knockout piglets

机译:在刚出生的杂合和纯合肌肉抑制蛋白敲除仔猪的骨骼肌中,从慢速 - 快速抽搐肌肉纤维转移

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Myostatin (MSTN) is a member of the transforming growth factor-beta superfamily that negatively regulates skeletal muscle development. A lack of MSTN induces muscle hypertrophy and increases formation of fast-twitch (Type II) muscle fibres. This study investigated muscle development in newborn heterozygous (MSTN+/-) and homozygous (MSTN-/-) MSTN-knockout piglets. Detailed morphological and gene and protein expression analyses were performed of the biceps femoris, semitendinosus and diaphragm of MSTN+/-, MSTN-/- and wild-type (WT) piglets. Haematoxylin-eosin staining revealed that the cross-sectional area of muscle fibres was significantly larger in MSTN-knockout than WT piglets. ATPase staining demonstrated that the percentage of Type IIb and IIa muscle fibres was significantly higher in MSTN-/- and MSTN+/- piglets respectively than in WT piglets. Western blotting showed that protein expression of myosin heavy chain-I was reduced in muscles of MSTN-knockout piglets. Quantitative reverse transcription-polymerase chain reaction revealed that, compared with WT piglets, myogenic differentiation factor (MyoD) mRNA expression in muscles was 1.3- to 2-fold higher in MSTN+/- piglets and 1.8- to 3.5-fold higher MSTN-/- piglets (P<0.05 and P<0.01 respectively). However, expression of myocyte enhancer factor 2C (MEF2C) mRNA in muscles was significantly lower in MSTN+/- than WT piglets (P<0.05). MSTN plays an important role in skeletal muscle development and regulates muscle fibre type by modulating the gene expression of MyoD and MEF2C in newborn piglets.
机译:Myostatin(MSTN)是转化生长因子-β超家族的成员,其负面调节骨骼肌发育。缺乏MSTN诱导肌肉肥大并增加快速抽搐(II型)肌肉纤维的形成。本研究研究了新生杂合(MSTN +/-)和纯合(MSTN - / - )MSTN敲除仔猪的肌肉发育。对MSTN +/-,MSTN / - / - 和野生型(WT)仔猪的二头肌雌性,半念珠菌和隔膜进行详细的形态学和基因和蛋白质表达分析。血红素 - 曙红染色显示,MSTN敲除的肌纤维的横截面积显着大于WT仔猪。 ATPase染色证明,IIB型和IIA肌纤维的百分比分别在WT仔猪中分别显着高于MSTN - / - 和MSTN +/-仔猪。 Western Blotting显示肌蛋白重链的蛋白质表达 - I在MSTN敲除仔猪的肌肉中减少。定量逆转录聚合酶链反应显示,与WT仔猪相比,MSTN +/-仔猪的肌肉中的肌肉分化因子(MyOP)mRNA表达为1.8至3.5倍的MSTN - / - / - 仔猪(分别为P <0.05和P <0.01)。然而,MSTN +/- WT仔猪在肌肉中肌细胞增强子因子2C(MEF2C)mRNA的表达显着降低(P <0.05)。 MSTN在骨骼肌发育中起着重要作用,通过调节新生仔猪在MyOD和MeF2C的基因表达中调节肌纤维型。

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