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Expression of several cytoskeletal proteins in ovine cerebral arteries: developmental and functional considerations

机译:绵羊脑动脉中几种细胞骨架蛋白的表达:发育和功能上的考虑

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摘要

Cytoskeleton proteins play important roles in regulating vascular smooth muscle (VSM) contraction and relaxation. We tested the hypotheses that the expression levels of several of these proteins change significantly during the course of development, and that these changes contribute to age-related changes in contractile responses. In cerebral arteries from 95-day (d) gestation and 140-d fetus, newborn lambs, and adult sheep, by Western immunoblot (n = 5 for each age) we quantified the relative expression of α-actin, α-tubulin, cyclophilin A, and proliferating cell nuclear antigen (PCNA). In addition, we examined middle cerebral artery tension responses to phenylephrine (PHE) stimulation in the absence or presence of cytochalasin D (3 × 10−7 m) and nocodazole (3 × 10−6 m), inhibitors of α-actin and α-tubulin polymerization, respectively. The expression levels of α-actin and cyclophilin A varied little during the course of development. In contrast, α-tubulin expression was ∼2.5-fold greater in both fetal age groups as compared to adult. Also, as compared to adult and as expected, expression of PCNA was several-fold greater in cerebral arteries of the 95-d fetus (×8), 140-d fetus (×5), and newborn (×3). In both adult and fetal middle cerebral artery, cytochalasin d-induced inhibition of actin polymerization decreased PHE-induced contraction, to ∼60 and ∼40% of control, respectively (despite no significant change in expression level). In contrast, α-tubulin inhibition by nocodazole showed little effect on PHE-induced tension (in spite of the age-related decrease in expression). In conclusion, expression levels of α-actin, a thin filament protein involved in contraction, remained relatively constant during the course of development, as did the effects of inhibition of its polymerization on contractility. In contrast, α-tubulin, important in intracellular protein trafficking, showed a significant age-related decrease in expression and played a relatively minor role in contractility. The present studies suggest that other cytoskeletal structural proteins and/or elements of pharmaco-mechanical coupling are important to developmental differences in cerebrovascular contractility. In addition, the relatively constant expression levels of α-actin and cyclophilin A with development, suggest that these are useful internal standards for studies of cytosolic protein expression.
机译:细胞骨架蛋白在调节血管平滑肌(VSM)的收缩和松弛中起重要作用。我们检验了以下假设:这些蛋白质中的几种蛋白质的表达水平在发育过程中发生了显着变化,并且这些变化导致了与年龄相关的收缩反应变化。在95天(d)妊娠和140天胎儿,新生羔羊和成年绵羊的脑动脉中,通过Western免疫印迹(每个年龄n = 5),我们定量了α-肌动蛋白,α-微管蛋白,亲环蛋白的相对表达A和增殖细胞核抗原(PCNA)。此外,我们研究了在不存在或存在细胞松弛素D(3×10 -7 m)和诺考达唑(3×10 −6)的情况下,大脑中动脉对苯肾上腺素(PHE)刺激的紧张反应 m),分别是α-肌动蛋白和α-微管蛋白聚合的抑制剂。在发育过程中,α-肌动蛋白和亲环蛋白A的表达水平几乎没有变化。相比之下,两个胎儿年龄组的α-微管蛋白表达都比成人高约2.5倍。而且,与成人相比,并且预期的那样,PCNA的表达在95 d胎儿(×8),140 d胎儿(×5)和新生儿(×3)的脑动脉中高出几倍。在成人和胎儿大脑中动脉中,细胞松弛素d诱导的肌动蛋白聚合抑制均降低了PHE诱导的收缩,分别降至对照的约60%和约40%(尽管表达水平无明显变化)。相反,诺考达唑对α-微管蛋白的抑制作用对PHE诱导的张力几乎没有影响(尽管与年龄相关的表达降低)。总之,在发育过程中,参与收缩的细丝蛋白α-肌动蛋白的表达水平保持相对恒定,抑制其聚合作用对收缩性的影响也是如此。相反,在细胞内蛋白质运输中重要的α-微管蛋白显示出明显的年龄相关性表达下降,并且在收缩性中起相对较小的作用。本研究表明,其他细胞骨架结构蛋白和/或药物-机械耦合元件对于脑血管收缩性的发育差异很重要。此外,随着发育,α-肌动蛋白和亲环蛋白A的表达水平相对恒定,表明这些是研究胞质蛋白表达的有用内部标准。

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