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首页> 外文期刊>Neurochemical Research >Developmental Regulation of Neuregulin1 Isoforms and erbB Receptor Expression in Intact Rat Dorsal Root Ganglia
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Developmental Regulation of Neuregulin1 Isoforms and erbB Receptor Expression in Intact Rat Dorsal Root Ganglia

机译:完整大鼠背根神经节中神经调节蛋白1亚型和erbB受体表达的发育调控。

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摘要

Neuregulins (NRGs) are a family of growth factors which bind to the erbB family of tyrosine kinase receptors. The exact nature and interaction of specific NRG isoforms and erbB receptors that occur during the development of the nervous system have not been reported. In order to better understand the role that different NRG isoforms and erbB receptors play in the differentiation, proliferation, and survival of neurons and glial cells, we isolated protein and mRNA from dorsal root ganglia of rat pups between embryonic day (E) 13 and postnatal day (P) 15. The relative expression levels of the NRGs and erbB receptors for the different time points were compared using both Western and RT-PCR analyses. NRG1-type1α protein levels were highest at E-13 and then decreased by approximately 40% and remained constant through P-15. In contrast, mRNA levels for NRG1-type1α remained constant from E-15 to P-15. The protein levels for NRG1-type 1β were similar to NRG1-type1α at E-13 with an approximate 40% increase in the levels at E-15 and E-17 followed by a decrease to E-13 levels for the remainder of the developmental time periods. The mRNA levels for NRG1-type1β remained constant from E-15 to P-15. The protein and mRNA expression patterns for each erbB receptor were distinctive. The protein levels for erbB-2 were highest at E-19 while erbB-3 levels were highest at E-17 and E-18. ErbB-4 protein levels were highest at E-13 and decreased through P-15. The developmental pattern for erbB-2 and erbB-4 mRNA levels had no relation to that of the corresponding protein levels while the mRNA levels for erbB-3 were highest at E-17 and E-18 similar to the pattern observed for the erbB-3 protein levels. We concluded that both NRG and erbB expression in dorsal root ganglia are mostly translationally controlled and that NRG1 isoforms and their erbB receptors are not coordinately regulated.
机译:神经调节蛋白(NRG)是与酪氨酸激酶受体erbB家族结合的生长因子家族。尚未报道在神经系统发育过程中发生的特定NRG亚型和erbB受体的确切性质和相互作用。为了更好地了解不同的NRG亚型和erbB受体在神经元和神经胶质细胞的分化,增殖和存活中所起的作用,我们从胚胎第(E)13天到出生后的幼鼠背根神经节分离了蛋白质和mRNA。第15天(P)15.使用Western和RT-PCR分析比较了不同时间点的NRGs和erbB受体的相对表达水平。 NRG1-type1α蛋白水平在E-13最高,然后下降约40%,并在P-15中保持恒定。相反,从E-15到P-15,NRG1-type1α的mRNA水平保持恒定。 NRG1型1β的蛋白质水平与E-13处的NRG1型1α相似,在E-15和E-17处的蛋白质水平增加了约40%,随后在其余的发育阶段降低到E-13的水平时间段。从E-15到P-15,NRG1-type1β的mRNA水平保持恒定。每个erbB受体的蛋白质和mRNA表达模式是不同的。 erbB-2的蛋白水平在E-19最高,而erbB-3的蛋白水平在E-17和E-18最高。 ErbB-4蛋白水平在E-13最高,而在P-15中下降。 erbB-2和erbB-4 mRNA水平的发育模式与相应蛋白水平无关,而erbB-3 mRNA水平在E-17和E-18最高,与erbB- 3种蛋白质水平。我们得出的结论是,背根神经节中的NRG和erbB表达均受翻译控制,并且NRG1亚型及其erbB受体不受协调调控。

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