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首页> 外文期刊>Cardiovascular Research >Tyrosine hydroxylase is expressed during early heart development and is required for cardiac chamber formation.
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Tyrosine hydroxylase is expressed during early heart development and is required for cardiac chamber formation.

机译:酪氨酸羟化酶在心脏的早期发育过程中表达,是心腔形成所必需的。

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AIMS: Tyrosine hydroxylase (TH) is the first and rate-limiting enzyme in catecholamine biosynthesis. Whereas the neuroendocrine roles of cathecolamines postnatally are well known, the presence and function of TH in organogenesis is unclear. The aim of this study was to define the expression of TH during cardiac development and to unravel the role it may play in heart formation. METHODS AND RESULTS: We studied TH expression in chick embryos by whole mount in situ hybridization and by quantitative reverse transcription-polymerase chain reaction and analysed TH activity by high-performance liquid chromatography. We used gain- and loss-of-function models to characterize the role of TH in early cardiogenesis. We found that TH expression was enriched in the cardiac field of gastrulating chick embryos. By stage 8, TH mRNA was restricted to the splanchnic mesoderm of both endocardial tubes and was subsequently expressed predominantly in the myocardial layer of the atrial segment. Overexpression of TH led to increased atrial myosin heavy chain (AMHC1) and T-box 5 gene (Tbx5) expression in the ventricular region and induced bradyarrhythmia. Similarly, addition of l-3,4-dihydroxyphenylalanine (l-DOPA) or dopamine induced ectopic expression of cardiac transcription factors (cNkx2.5, Tbx5) and AMHC1 as well as sarcomere formation. Conversely, blockage of dopamine biosynthesis and loss of TH activity decreased AMHC1 and Tbx5 expression, whereas exposure to retinoic acid (RA) induced TH expression in parallel to that of AMHC1 and Tbx5. Concordantly, inhibition of endogenous RA synthesis decreased TH expression as well as that of AMHC1 and Tbx5. CONCLUSION: TH is expressed in a dynamic pattern during the primitive heart tube formation. TH induces cardiac differentiation in vivo and it is a key regulator of the heart patterning, conferring atriogenic identity.
机译:目的:酪氨酸羟化酶(TH)是儿茶酚胺生物合成中的第一种酶和限速酶。众所周知,出生后的儿茶酚胺具有神经内分泌作用,但尚不清楚TH在器官发生中的存在和功能。这项研究的目的是确定心脏发育过程中TH的表达并阐明其在心脏形成中的作用。方法和结果:我们通过整体原位杂交和定量逆转录-聚合酶链反应研究了鸡胚中TH的表达,并通过高效液相色谱分析了TH的活性。我们使用功能丧失模型来表征TH在早期心脏发生中的作用。我们发现,TH表达在雏鸡胚的心脏区域富集。到第8阶段,TH mRNA被限制在两个心内膜管的内脏中胚层中,随后主要在心房段的心肌层中表达。 TH的过度表达导致心室区域的心房肌球蛋白重链(AMHC1)和T-box 5基因(Tbx5)表达增加,并引起心律失常。类似地,添加l-3,4-二羟基苯丙氨酸(1-DOPA)或多巴胺会诱导心脏转录因子(cNkx2.5,Tbx5)和AMHC1的异位表达以及肌节的形成。相反,多巴胺生物合成的阻滞和TH活性的降低降低了AMHC1和Tbx5的表达,而暴露于视黄酸(RA)诱导的TH表达与AMHC1和Tbx5的表达平行。相应地,抑制内源性RA合成会降低TH表达以及AMHC1和Tbx5。结论:TH在原始心管形成过程中以动态模式表达。 TH会在体内诱导心脏分化,它是心脏构图的关键调节剂,可赋予房颤身份。

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