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Crystallization of the collagen-like polypeptide (PPG)(10) aboard the International Space Station. 1. Video observation

机译:在国际空间站上结晶胶原蛋白样多肽(ppG)(10)。 1.视频观察

摘要

Single chains of the collagen model polypeptide with sequence (Pro-Pro-Gly)10, hereafter referred to as (PPG)10, aggregate to form rodshaped triple helices. Crystals of (PPG)10 were grown in the Advanced Protein Crystallization Facility (APCF) both onboard the International Space Station (ISS) and on Earth. The experiments allow the direct comparison of four different crystallization environments for the first time: solution in microgravity (μg), agarose gel in μg, solution on earth, and gel on earth. Both on board and on ground, the crystal growth was monitored by a CCD video camera. The image analysis provided information on the spatial distribution of the crystals, their movement and their growth rate. The analysis of the distribution of crystals reveals that the crystallization process occurs as it does in batch conditions. Slow motions have been observed onboard the ISS. Different to Space-Shuttle experiment, the crystals onboard the ISS moved coherently and followed parallel trajectories. Growth rate and induction time are very similar both in gel and in solution, suggesting that the crystal growth rate is controlled by the kinetics at the interface under the used experimental conditions. These results provide the first data in the crystallogenesis of (PPG)10, which is a representative member of non-globular, rod-like proteins
机译:具有序列(Pro-Pro-Gly)10的胶原蛋白模型多肽的单链(以下称为(PPG)10)聚集形成棒状三重螺旋。 (PPG)10晶体是在国际空间站(ISS)上和地球上的高级蛋白质结晶设施(APCF)中生长的。实验首次允许直接比较四种不同的结晶环境:微重力溶液(μg),琼脂糖凝胶(μg),地球上溶液和地球上凝胶。在船上和地面上,晶体生长均由CCD摄像机监控。图像分析提供了有关晶体的空间分布,其运动和生长速率的信息。晶体分布的分析表明,结晶过程的发生与分批条件相同。在国际空间站上观察到慢动作。与航天飞机实验不同,国际空间站上的晶体连贯移动并遵循平行轨迹。凝胶和溶液中的生长速率和诱导时间都非常相似,这表明在使用的实验条件下,晶体的生长速率受界面动力学的控制。这些结果提供了(PPG)10结晶的第一个数据,它是非球状杆状蛋白的代表成员

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