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Signal recognition particle causes a transient arrest in the biosynthesis of prepromelittin and mediates its translocation across mammalian endoplasmic reticulum

机译:信号识别颗粒在前促黄体素原蛋白的生物合成中引起短暂停滞并介导其跨哺乳动物内质网的转运

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摘要

The translocation of prepromelittin (pPM) across mammalian endoplasmic reticulum was studied in both wheat germ and reticulocyte lysate. In the wheat germ system, signal recognition particle (SRP) caused a transient arrest in the synthesis of pPM. This was indicated by a slowdown in the rate of synthesis of pPM in the presence of SRP. The arrest was specific, dependent on the concentration of SRP, and more effective at early incubation time. In a tightly synchronized translation system, SRP had no apparent effect on the elongation of pPM, indicating that the effect of SRP on pPM chain synthesis might be at the final stages of chain elongation and release from the ribosome. This was reflected in a transient accumulation of pPM as peptidyl tRNA. Because pPM is composed of only 70 amino acids, arrest by SRP may be very close to chain termination. Arrest at this stage of chain synthesis seems to be unstable and the nascent chain gets terminated and released from the ribosome after a transient delay. The translocation of pPM was shown to be dependent on both SRP and docking protein. The difference in the translocation efficiency of pPM in reticulocyte and wheat germ lysates may reflect a difference in the targeting process in the two systems.
机译:在小麦胚芽和网织红细胞裂解物中均研究了前蜂毒蛋白(pPM)在哺乳动物内质网中的转运。在小麦胚芽系统中,信号识别颗粒(SRP)导致pPM合成过程中的短暂停滞。在存在SRP的情况下,pPM合成速率的降低表明了这一点。逮捕是特定的,取决于SRP的浓度,并且在早期孵育时更有效。在紧密同步的翻译系统中,SRP对pPM的延伸没有明显影响,这表明SRP对pPM链合成的影响可能处于链延长和从核糖体释放的最后阶段。这反映为pPM作为肽基tRNA的短暂积累。由于pPM仅由70个氨基酸组成,因此SRP的阻滞可能非常接近链终止。在链合成的这个阶段,逮捕似乎不稳定,并且在短暂的延迟后,新生链被终止并从核糖体中释放出来。显示pPM的易位依赖于SRP和对接蛋白。 pPM在网织红细胞和小麦胚芽裂解物中的转运效率的差异可能反映了这两种系统在靶向过程中的差异。

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