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首页> 外文期刊>Journal of Cell Science >Plant and animal profilins are functionally equivalent and stabilize microfilaments in living animal cells.
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Plant and animal profilins are functionally equivalent and stabilize microfilaments in living animal cells.

机译:动植物蛋白原在功能上是等效的,可稳定动物活体细胞中的微丝。

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We have analyzed the degree of functional similarity between birth and mammalian profilins, two members of the profilin family which show only a moderate sequence homology (22%) in living animal cells. The plant profilin, derived from birch pollen, was stably expressed in BHK-21 cells. Plant and endogenous profilin synthesis and cellular distribution were monitored by specific monoclonal antibodies. Quantitation of profilin and actin on calibrated immunoblots showed that two stable clones contained in total 1.4 and 2.0 times as much profilin as the parental cells. Using double fluorescence and confocal laser scanning microscopy, it was seen that the endogenous and the plant profilin colocalized with dynamic microfilaments, in particular with F-actin-rich foci and cortical microfilament webs of spreading cells, with dynamic microfilament bundles induced by serum deprival, and with cytochalasin D- and latrunculin-induced transient F-actin aggregates. The increase in the overall profilin concentration correlated with a significantly higher resistance of actin filaments to these drugs. Our data indicate that even profilins of highly distant evolutionary origin can functionally substitute for each other and support the hypothesis that in animal cells, profilins are engaged in regulating either the stability or the kinetic properties of actin filaments.
机译:我们已经分析了出生和哺乳动物profilins(profilin家族的两个成员)之间的功能相似程度,profilin家族的两个成员在活的动物细胞中仅显示中等序列同源性(22%)。源自桦树花粉的植物蛋白原在BHK-21细胞中稳定表达。植物和内源性脯蛋白的合成和细胞分布通过特定的单克隆抗体进行监测。在校准的免疫印迹上定量分析profilin和肌动蛋白表明,两个稳定的克隆所含profilin的总量是亲代细胞的1.4和2.0倍。使用双荧光和共聚焦激光扫描显微镜观察,发现内源性和植物蛋白丝蛋白与动态微丝,尤其是富含F-肌动蛋白的病灶和散布细胞的皮质微丝网共定位,并且由血清剥夺诱导动态微丝束,并伴有细胞松弛素D和latrunculin诱导的瞬时F-肌动蛋白聚集体。总体前纤溶蛋白浓度的增加与肌动蛋白丝对这些药物的抗药性明显更高有关。我们的数据表明,即使进化蛋白的起源距离很远,它们也可以在功能上相互替代,并支持以下假设:在动物细胞中,蛋白素参与调节肌动蛋白丝的稳定性或动力学性质。

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