正常和异常小鼠腭发育过程中蛋白激酶C同工酶的表达和活性。

G Balasubramanian, J F Amann, C S Reddy
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引用次数: 0

摘要

蛋白激酶C (PKC)在信号转导中起着关键作用,介导各种细胞事件对正常发育至关重要,包括腭的发育。体内和体外研究表明,真菌毒素二氯酸D (SAD)对PKC的抑制与其诱导小鼠腭裂(CP)的相关性。本研究采用免疫印迹法、免疫组织化学法和磷转移法研究了妊娠期(GD) 12 ~ 14.5天对照和sd暴露小鼠胚腭裂中PKC各同工酶的时空表达和活性。Ca2+依赖性同工酶PKC α和PKC β i在GD 12.0时显著表达,在GD 14.5时逐渐降低,而PKC β i和PKC γ在整个过程中可以忽略不计。所有Ca2+非依赖性同工酶(epsilon, delta和zeta)表达更丰富,与Ca2+依赖性同工酶相反,随着年龄的增长逐渐增加。SAD没有改变这种表达模式,但在整个发育过程中增强了PKC epsilon的磷酸化。免疫组织化学分析显示PKC在上皮和间质间具有同工酶特异性分布。正如预期的那样,SAD显著抑制腭提取物中Ca2+依赖性PKC的总活性。尽管腭提取物中总的Ca2+独立PKC活性不受SAD影响,但单个纯同工酶要么被选择性地抑制(PKC zeta),刺激(PKC delta),要么不受SAD影响(PKC epsilon)。这些结果表明,PKC同工酶在发育中的上颚表现出动态的时空表达和活性模式,SAD诱导CP与其激活和/或活性的改变有关。
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Expression and activity of protein kinase C isoenzymes during normal and abnormal murine palate development.

Protein kinase C (PKC) plays a critical role in signal transduction, mediating various cellular events critical for normal development, including that of the palate. In vivo and in vitro studies suggest the relevance of the inhibition of PKC by the mycotoxin, secalonic acid D (SAD), to its induction of cleft palate (CP) in mice. In the present study, temporal and spatial expression and the activity of various PKC isoenzymes were studied in the control and SAD-exposed murine embryonic palate during gestational days (GD) 12-14.5 by western blotting, immunohistochemistry, and phosphotransfer assay. The Ca2+-dependent isoenzymes, PKC alpha and PKC betaII, showed significant expression on GD 12.0, which gradually decreased through GD 14.5, whereas PKC betaI and PKC gamma were negligible throughout. All Ca2+-independent isoenzymes (epsilon, delta, and zeta) were expressed more abundantly and, in contrast to the Ca2+-dependent ones, progressively increased with age. SAD failed to alter this pattern of expression but enhanced the phosphorylation of PKC epsilon throughout development. Immunohistochemical analysis revealed an isoenzyme-specific distribution of PKC between the epithelium and mesenchyme. As expected, SAD significantly inhibited the total Ca2+-dependent PKC activity in palatal extracts. Although total Ca2+-independent PKC activity in palatal extracts was unaffected by SAD, individual pure isoenzymes were either selectively inhibited (PKC zeta), stimulated (PKC delta), or unaffected (PKC epsilon) by SAD. These results show that PKC isoenzymes exhibit dynamic temporal and spatial patterns of expression and activity in the developing palate and that the induction of CP by SAD is associated with an alteration in their activation and/or activity.

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