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首页> 外文期刊>Journal of Muscle Research and Cell Motility >Phosphorylation of kinase-related protein (telokin) in tonic and phasic smooth muscles.
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Phosphorylation of kinase-related protein (telokin) in tonic and phasic smooth muscles.

机译:滋补和阶段性平滑肌中的激酶相关蛋白(telokin)的磷酸化。

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摘要

KRP (telokin), an independently expressed C-terminal myosin-binding domain of smooth muscle myosin light chain kinase (MLCK), has been reported to have two related functions. First, KRP stabilizes myosin filaments (Shirinsky et al., 1993, J. Biol. Chem. 268, 16578-16583) in the presence of ATP. Secondly, KRP can modulate the level of myosin light chain phosphorylation. In this latter role, multiple mechanisms have been suggested. One hypothesis is that light chain phosphorylation is diminished by the direct competition of KRP and MLCK for myosin, resulting in a loss of contraction. Alternatively, KRP, through an unidentified mechanism, accelerates myosin light chain dephosphorylation in a manner possibly enhanced by KRP phosphorylation. Here, we demonstrate that KRP is a major phosphoprotein in smooth muscle, and use a comparative approach to investigate how its phosphorylation correlates with sustained contraction and forskolin-induced relaxation. Forskolin relaxation of precontracted artery strips caused little increase in KRP phosphorylation, while treatment with phorbol ester increased the level of KRP phosphorylation without a subsequent change in contractility. Although phorbol ester does not induce contraction of phasic tissues, the level of KRP phosphorylation is increased. Phosphopeptide maps of KRP from both tissues revealed multiple sites of phosphorylation within the N-terminal region of KRP. Phosphopeptide maps of KRP from gizzard were more complex than those for KRP from artery consistent with heterogeneity at the amino terminus and/or additional sites. We discovered through analysis of KRP phosphorylation in vitro that Ser12, Ser15 and Ser15 are phosphorylated by cAMP-dependent protein kinase, mitogen-activated protein (MAP) kinase and glycogen synthase kinase 3 (GSK3), respectively. Phosphorylation by GSK3 was dependent upon prephosphorylation by MAP kinase. This appears to be the first report of conditional or hierarchical phosphorylation of KRP. Peptides consistent with such multiple phosphorylations were found on the in vivo phosphopeptide maps of avian KRP. Collectively, the available data indicate that there is a complex relationship between the in vivo phosphorylation states of KRP and its effects on relaxation in smooth muscle.
机译:据报道,KRP(telokin)是平滑肌肌球蛋白轻链激酶(MLCK)的一个独立表达的C端肌球蛋白结合结构域,具有两个相关功能。首先,KRP在ATP存在下稳定肌球蛋白丝(Shirinsky等,1993,J.Biol。Chem.268,16578-16583)。其次,KRP可以调节肌球蛋白轻链磷酸化的水平。在后一角色中,已经提出了多种机制。一种假设是,KRP和MLCK与肌球蛋白的直接竞争会减弱轻链的磷酸化作用,从而导致收缩损失。备选地,KRP通过未知机制以可能通过KRP磷酸化增强的方式加速肌球蛋白轻链去磷酸化。在这里,我们证明KRP是平滑肌中的主要磷蛋白,并使用比较方法来研究其磷酸化如何与持续收缩和毛喉素诱导的松弛相关。佛司可林对预收缩动脉条的松弛作用几乎没有引起KRP磷酸化的增加,而佛波醇酯的处理却增加了KRP磷酸化的水平,而随后的收缩力却没有改变。尽管佛波酯不诱导相组织收缩,但KRP磷酸化水平增加。来自两个组织的KRP的磷酸肽图揭示了KRP N端区域内的多个磷酸化位点。来自g的KRP的磷酸肽图谱比来自动脉的KRP的磷酸肽图谱更复杂,这与氨基末端和/或其他位点的异质性相一致。我们通过体外KRP磷酸化分析发现,Ser12,Ser15和Ser15分别被cAMP依赖性蛋白激酶,促分裂原激活蛋白(MAP)激酶和糖原合酶激酶3(GSK3)磷酸化。 GSK3的磷酸化取决于MAP激酶的预磷酸化。这似乎是KRP有条件或分级磷酸化的第一个报告。在禽KRP的体内磷酸肽图上发现了与这种多重磷酸化一致的肽。总体而言,可用数据表明,KRP的体内磷酸化状态与其对平滑肌松弛的影响之间存在复杂的关系。

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