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通过天然/大型纳米盘恢复天然橡胶合成

Reviving Natural Rubber Synthesis via Native/Large Nanodiscs.

作者信息

Umar Abdul Wakeel, Ahmad Naveed, Xu Ming

机构信息

BNU-HKUST Laboratory of Green Innovation, Advanced Institute of Natural Sciences, Beijing Normal University at Zhuhai (BNUZ), Zhuhai 519087, China.

Joint Center for Single Cell Biology, Shanghai Collaborative Innovation Center of Agri-Seeds, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Polymers (Basel). 2024 May 22;16(11):1468. doi: 10.3390/polym16111468.

Abstract

Natural rubber (NR) is utilized in more than 40,000 products, and the demand for NR is projected to reach $68.5 billion by 2026. The primary commercial source of NR is the latex of . NR is produced by the sequential cis-condensation of isopentenyl diphosphate (IPP) through a complex known as the rubber transferase (RTase) complex. This complex is associated with rubber particles, specialized organelles for NR synthesis. Despite numerous attempts to isolate, characterize, and study the RTase complex, definitive results have not yet been achieved. This review proposes an innovative approach to overcome this longstanding challenge. The suggested method involves isolating the RTase complex without using detergents, instead utilizing the native membrane lipids, referred to as "natural nanodiscs", and subsequently reconstituting the complex on liposomes. Additionally, we recommend the adaptation of large nanodiscs for the incorporation and reconstitution of the RTase complex, whether it is in vitro transcribed or present within the natural nanodiscs. These techniques show promise as a viable solution to the current obstacles. Based on our experimental experience and insights from published literature, we believe these refined methodologies can significantly enhance our understanding of the RTase complex and its role in in vitro NR synthesis.

摘要

天然橡胶(NR)被应用于40000多种产品中,预计到2026年,对NR的需求将达到685亿美元。NR的主要商业来源是 的乳胶。NR是由异戊烯基二磷酸(IPP)通过一种称为橡胶转移酶(RTase)复合物的复合体进行连续顺式缩合产生的。该复合体与橡胶颗粒相关,橡胶颗粒是NR合成的特殊细胞器。尽管人们多次尝试分离、表征和研究RTase复合体,但尚未取得明确结果。本综述提出了一种创新方法来克服这一长期存在的挑战。建议的方法包括不使用去污剂分离RTase复合体,而是利用称为“天然纳米盘”的天然膜脂,随后在脂质体上重组该复合体。此外,我们建议采用大型纳米盘来整合和重组RTase复合体,无论它是体外转录的还是存在于天然纳米盘中。这些技术有望成为解决当前障碍的可行方案。基于我们的实验经验和已发表文献的见解,我们相信这些改进的方法可以显著增强我们对RTase复合体及其在体外NR合成中作用的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e3b/11174458/c78c13a449d4/polymers-16-01468-g003.jpg

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