您現(xiàn)在的位置: > 大學(xué)英語(yǔ)六級(jí) > adenylate adenylate的音標(biāo)為[?"den?le?t],基本意思是"腺苷酸";速記技巧為:用簡(jiǎn)寫形式表示,即ATP。
Adenylate這個(gè)詞的詞源可以追溯到拉丁語(yǔ)和希臘語(yǔ),它由詞根“adenos”和“-late”組成,意為“腺的”。這個(gè)詞的主要變化形式是“adenylate”和“adenylat”。
相關(guān)單詞:
ADP(二磷酸腺苷): Adenylate的縮寫,是一種重要的核苷酸,在生物體內(nèi)參與許多重要的生物化學(xué)反應(yīng)。
AMP(三磷酸腺苷): Adenylate的另一種形式,是生物體內(nèi)主要的能量?jī)?chǔ)存形式。
ADPase: 分解AMP生成ADP的酶。
Adenylate kinase: 一種在細(xì)胞中轉(zhuǎn)移核苷酸中腺苷酸陰離子的酶。
Adenosine: 腺嘌呤與糖分子的衍生物,是腺苷酸的前體。
Adenosine 3",5"-monophosphate (cAMP): 一種重要的第二信使分子,參與許多細(xì)胞信號(hào)傳導(dǎo)過(guò)程。
Adenosine 5"-diphosphate (ADP): 二磷酸腺苷是某些生物化學(xué)反應(yīng)的中間產(chǎn)物。
Adenosine 5"-triphosphate (ATP): 三磷酸腺苷是細(xì)胞內(nèi)能量主要儲(chǔ)存形式,為各種生物化學(xué)反應(yīng)提供能量。
Adenosine-uridine 5"-diphosphate (UDP): UDP是一種重要的糖基轉(zhuǎn)移酶的輔基,參與許多生物化學(xué)反應(yīng)。
Adenosine-guanosine 5"-tetraphosphate (Ap4A): Ap4A是一種細(xì)胞內(nèi)重要的調(diào)節(jié)分子。
以上這些單詞都與腺嘌呤、核苷酸和能量等生物化學(xué)主題相關(guān),進(jìn)一步說(shuō)明了Adenylate這個(gè)詞在生物學(xué)中的重要性和廣泛應(yīng)用。
常用短語(yǔ):
1. adenosine triphosphate (ATP)
2. adenylate energy
3. adenylate kinase
4. adenylate cyclase
5. adenylate deaminase
6. adenylate kinase inhibitor
7. adenylate energy depletion
例句:
1. The cells use adenosine triphosphate to power their activities.
2. Adenylate energy levels drop during periods of intense exercise.
3. Adenylate cyclase is a key enzyme in the production of cAMP.
4. Adenylate deaminase helps regulate the levels of adenosine nucleotides.
5. The inhibitor blocks adenylate kinase"s ability to transfer energy.
6. Adenylate energy depletion can lead to cell death.
英文小作文:
Adenylate energy is crucial for cellular functions, and its depletion can lead to various diseases and disorders. ATP, the primary source of cellular energy, is produced through a series of chemical reactions that require the participation of numerous enzymes, including adenylate kinase and adenylate cyclase. Adenylate cyclase plays a key role in the production of cAMP, which regulates numerous cellular processes, such as cell growth and division, while adenylate kinase helps transfer energy between different molecules within the cell. Understanding the role of adenosine nucleotides and their enzymes in cellular metabolism is essential for developing effective treatments for diseases related to adenosine nucleotide imbalance.
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