构建具有尿素循环路径的人工细胞,用于氨酸排毒
Tongtong Ren1, Dongliang Liu1, Jingjing Zhao1
1State Key Laboratory of Urban-rural Water Resource and Environment, MIIT Key Laboratory of Critical Materials Technology for New Energy Conversion and Storage, Heilongjiang Provincial Joint Laboratory of Molecular Science (International Cooperation), School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin, 150001, China.
Angewandte Chemie (International ed. in English)
|November 17, 2025
概括
人工细胞是通过尿素循环路径来排毒有害的的. 这一突破证明了有效的氨去除,并为生物医学应用提供了潜力.
科学领域:
- 合成生物学 合成生物学
- 生物化学 生物化学
- 细胞工程 细胞工程
背景情况:
- 了解细胞机制依赖于自下而上的人工细胞结构.
- 开发用于排毒的人工细胞,特别是氨,是一个重大挑战.
研究的目的:
- 为了在人工细胞中复制尿素循环路径,有效地排毒氨.
- 为了证明这些工程人工细胞能够降低细胞外氨度的能力.
主要方法:
- 五种酶尿素循环路径 (CPS,OTC,ASS,ASL,ARG) 在巨型单囊 (GUV) 中的复合.
- 将尿素循环路径和二碳酸 (NH4HCO3) 封装成GUV,以创建人工细胞.
- 利用梅利孔来控制氨的流入和随后的代谢转化.
主要成果:
- 在人造细胞内实现了61.9%的转化为尿素的转化率.
- 通过使用1.5×10^6人工细胞/mL,表现出细胞外氨酸碳酸盐度从20.0到2.3mM显著下降.
- 成功地从高氨毒性中拯救了施万细胞,验证了排毒能力.
结论:
- 工程人工细胞通过重建的尿素循环路径有效地排毒氨.
- 这种方法为为生物医学应用创造具有复杂代谢网络的人工细胞提供了基础.
相关概念视频
Urea Cycle
49.4K
The urea cycle describes how liver cells convert ammonia to urea. Ammonia is a toxic waste product of protein catabolism. Land animals must convert ammonia into the less toxic urea which can be safely eliminated by the kidneys through urine. Marine animals excrete ammonia directly, and the surrounding water dilutes the ammonia to safe levels.
49.4K
Inorganic Nitrogen Assimilation
421
Nitrogen is an essential element in biological systems, forming a crucial component of proteins, nucleic acids, and other cellular constituents. Many bacteria and archaea acquire nitrogen in the form of nitrate (NO₃⁻) or ammonia (NH₃), which are then assimilated into biomolecules through specific enzymatic pathways.Assimilatory Nitrate ReductionWhen nitrate enters the cell, it undergoes a two-step reduction process known as assimilatory nitrate reduction. Initially, the enzyme...
421
Comparative Excretory Systems
26.4K
Animals have evolved different strategies for excretion, the removal of waste from the body. Most waste must be dissolved in water to be excreted, so an animal’s excretory strategy directly affects its water balance.
26.4K
Amino Acid Biosynthetic Pathways
977
Amino acid biosynthesis is essential for cell growth, protein synthesis, and metabolic regulation. Cells generate essential and non-essential amino acids from metabolic intermediates to sustain vital biological functions. These intermediates originate from key metabolic pathways: glycolysis, the tricarboxylic acid (TCA) cycle, and the pentose phosphate pathway. Important precursors include α-ketoglutarate, pyruvate, oxaloacetate, phosphoenolpyruvate, and erythrose-4-phosphate, which...
977
Overview of Nitrogen Metabolism
10.9K
Nitrogen is a very important element for life because it is a major constituent of proteins and nucleic acids. It is a macronutrient, and in nature, it is recycled from organic compounds and stored in the form of ammonia, ammonium ions, nitrate, nitrite, or nitrogen gas by many metabolic processes. Many of these metabolic processes are carried out only by prokaryotes.
The largest pool of nitrogen available in the terrestrial ecosystem is gaseous nitrogen (N2) from the air, but this...
The largest pool of nitrogen available in the terrestrial ecosystem is gaseous nitrogen (N2) from the air, but this...
10.9K
Amino Acid Catabolism
920
Microorganisms rely on proteins as an essential carbon and energy source, particularly in environments with limited polysaccharides or lipids. However, proteins are too large to cross the plasma membrane unaided, necessitating enzymatic degradation. Microbes secrete extracellular proteases and peptidases that hydrolyze proteins into peptides, which can then be transported across the membrane. Once inside the cell, intracellular proteases degrade these peptides into free amino acids, which...
920


