首页> 外文期刊>Molecular and Cellular Biochemistry: An International Journal for Chemical Biology >Dexamethasone increases the incorporation of (3H)serine into phosphatidylserine and the activity of serine base exchange enzyme in mouse thymocytes: a possible relation between serine base exchange enzyme and apoptosis.
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Dexamethasone increases the incorporation of (3H)serine into phosphatidylserine and the activity of serine base exchange enzyme in mouse thymocytes: a possible relation between serine base exchange enzyme and apoptosis.

机译:地塞米松增加(3H)丝氨酸向磷脂酰丝氨酸的掺入和小鼠胸腺细胞中丝氨酸碱基交换酶的活性:丝氨酸碱基交换酶与细胞凋亡之间的可能关系。

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摘要

The exposure of phosphatidylserine toward the external surface of the membrane is a well-established event of programmed cell death. The possibility that an apoptotic stimulus influences the metabolism of this phospholipid could be relevant not only in relation to the previously mentioned event but also in relation to the capability of membrane phosphatidylserine to influence PKC activity. The present investigation demonstrates that treatment of mouse thymocytes with the apoptotic stimulus dexamethasone, enhances the incorporation of [3H]serine into phosphatidylserine. Cell treatment with dexamethasone also enhanced the activity of serine base exchange enzyme, assayed in thymocyte lysate. Both the effects were observed at periods of treatment preceding DNA fragmentation. The addition of unlabelled ethanolamine, together with [3H]serine to the medium containing dexamethasone-treated thymocytes lowered the radioactivity into phosphatidylserine. Serine base exchange enzyme activity was influenced by the procedure used to prepare thymocyte lysate and was lowered by the addition of fluoroaluminate, that is widely used as a G-protein activator. The increase of serine base exchange enzyme activity induced by dexamethasone treatment was observed independently by the procedure used to prepare cell lysate and by the presence or absence of fluoroaluminate.
机译:磷脂酰丝氨酸向膜外表面的暴露是程序性细胞死亡的公认事件。凋亡刺激影响该磷脂的代谢的可能性不仅与先前提到的事件有关,而且与膜磷脂酰丝氨酸影响PKC活性的能力有关。本研究表明,用细胞凋亡地塞米松治疗小鼠胸腺细胞可增强[3H]丝氨酸向磷脂酰丝氨酸的结合。在胸腺细胞裂解物中测定的地塞米松细胞处理还增强了丝氨酸碱基交换酶的活性。在DNA片段化之前的治疗期间都观察到了两种作用。将未标记的乙醇胺与[3H]丝氨酸一起添加到含有地塞米松处理的胸腺细胞的培养基中,从而降低了磷脂酰丝氨酸的放射性。丝氨酸碱基交换酶的活性受制备胸腺细胞裂解物的程序的影响,并由于添加了广泛用作G蛋白活化剂的氟铝酸盐而降低。由地塞米松处理诱导的丝氨酸碱基交换酶活性的增加通过用于制备细胞裂解物的程序以及存在或不存在氟铝酸盐独立地观察到。

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