首页> 外文期刊>Plant signaling & behavior >Calcium powered phloem protein of SEO gene family 'forisome' functions in wound sealing and act as biomimetic smart materials.
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Calcium powered phloem protein of SEO gene family 'forisome' functions in wound sealing and act as biomimetic smart materials.

机译:SEO基因家族“钙质”的钙动力韧皮部蛋白质在伤口封闭中起作用,并充当仿生智能材料。

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Forisomes protein belongs to SEO gene family and is unique to Fabaceae family. These proteins are located in sieve tubes of phloem and function to prevent loss of nutrient-rich photoassimilates, upon mechanical injury/wounding. Forisome protein is also known as ATP independent, mechanically active proteins. Despite the wealth of information role of forisome in plants are not yet fully understood. Recent reports suggest that forisomes protein can act as ideal model to study self assembly mechanism for development of nanotechnological devices like microfluidic system application in space exploration mission. Improvement in micro instrument is highly demanding and has been a key technology by NASA in future space exploration missions. Based on its physical parameters, forisome are found to be ideal biomimetic materials for micro fluidic system because the conformational shifts can be replicated in vitro and are fully reversible over large number of cycles. By the use of protein engineering forisome recombinant protein can be tailored. Due to its unique ability to convert chemical energy into mechanical energy forisome has received much attention. For nanotechnological application and handling biomolecules such as DNA, RNA, protein and cell as a whole microfluidic system will be the most powerful technology. The discovery of new biomimetic smart materials has been a key factor in development of space science and its requirements in such a challenging environment. The field of microfludic, particularly in terms of development of its components along with identification of new biomimetic smart materials, deserves more attention. More biophysical investigation is required to characterize it to make it more suitable under parameters of performance.
机译:甲状旁腺蛋白属于SEO基因家族,是豆科的独有物种。这些蛋白质位于韧皮部的筛管中,在机械损伤/受伤时起到防止富含营养的光同化物流失的作用。辅酶蛋白也称为不依赖ATP的机械活性蛋白。尽管有大量的信息,但还没有完全了解植物中有毒物质的作用。最近的报道表明,甲状旁腺蛋白可以作为理想的模型来研究自组装机制,以开发诸如微流体系统在太空探索任务中应用的纳米技术设备。微型仪器的改进要求很高,并且已成为NASA在未来太空探索任务中的一项关键技术。基于其物理参数,人们发现forisome是微流体系统的理想仿生材料,因为其构象变化可以在体外复制,并且在大量循环中可完全逆转。通过使用蛋白质工程,可以定制重组重组蛋白质。由于其将化学能转化为机械能的独特能力,备受关注。对于纳米技术应用和处理生物分子(例如DNA,RNA,蛋白质和细胞)作为整个微流体系统,将是最强大的技术。在这种充满挑战的环境中,新型仿生智能材料的发现一直是发展空间科学及其要求的关键因素。微流体领域,特别是在其组件的开发以及新型仿生智能材料的识别方面,应引起更多关注。需要更多的生物物理研究来表征它,以使其在性能参数下更合适。

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