与细胞骨架结构相关的增殖内皮细胞中的活性应激激酶。

Marianne Hamel, Daniela Kanyi, Mark D Cipolle, Linda Lowe-Krentz
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引用次数: 14

摘要

越来越清楚的是,除了细胞核中成熟的转录因子底物外,应激激活蛋白激酶还具有细胞质底物。本研究记录了这些酶在增殖血管细胞中的特定细胞质位置。活性c-jun nh2末端激酶(JNK)的免疫荧光染色,JNK微丝沉淀,以及细胞松弛素(而非诺可达唑)处理后纤维相关活性JNK的丧失,共同表明活性JNK与应激纤维有关。缺乏完全的支架共定位和完全缺乏立即的上游激酶共定位,以及JNK抑制剂无法改变JNK-微丝关联,这表明微丝关联不仅仅与酶激活有关。此外,在局灶性粘连中,p38与血管蛋白均有活性。虽然p38在局灶粘连中也会被细胞松弛素破坏,但在诺可达唑治疗后p38仍保持稳定。这些结果支持了血管细胞应激激酶在细胞质信号转导中起重要作用的假设。在增殖细胞中,活性应激激活蛋白激酶在特定细胞骨架结构上的定位表明,在血管细胞增殖等条件下,这些酶的亚群参与了细胞骨架的信号转导。
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Active stress kinases in proliferating endothelial cells associated with cytoskeletal structures.

It has become increasingly clear that stress-activated protein kinases have cytoplasmic substrates in addition to well-established transcription factor substrates in cell nuclei. The present study documented specific cytoplasmic locations of these enzymes in proliferating vascular cells. Immunofluorescent staining for active c-jun NH2-terminal kinase (JNK), the precipitation of JNK with microfilaments, and the loss of fiber-associated active JNK after cytochalasin treatment, but not nocodazole treatment, together indicate that active JNK is associated with stress fibers. The lack of complete scaffold colocalization and the total lack of immediate upsteam kinase colocalization along with the inability of JNK inhibitors to alter JNK-microfilament associations suggest that the microfilament association is not simply involved in enzyme activation. In addition, active p38 was found along with vinculin in focal adhesions. Although the p38 in focal adhesions could also be disrupted by cytochalasin treatment, it remained stable after nocodazole treatment. These results support the hypothesis that vascular cell stress kinase enzymes are important for signal transduction in the cytoplasm. The localization of active stress-activated protein kinases to specific cytoskeletal structures in proliferating cells suggests that subsets of these enzymes are involved in signal transduction to and/or from the cytoskeleton under conditions that include vascular cell proliferation.

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