apoenzyme的音標為["??p??nza?m?z?m],基本翻譯為“脫酶物質(zhì)”,速記技巧為“apo=無,enzyme=酶,無酶物質(zhì)”。
apoenzyme這個詞的英文詞源可以追溯到拉丁語“apo”和希臘語“enzyme”,表示“從……中分離出來的酶”。它的變化形式包括復數(shù)形式“apoenzymes”和過去式和過去分詞形式“apoenzymed”或“apoenzymed”。
相關單詞:
1. “zymogen” - 酶原,由希臘語“zymos”和“genos”組成,意為“酶的起源”,與“enzyme”相關。
2. “zymurgy” - 酶工程,是一門利用酶的特性和功能來處理、加工和制造物質(zhì)的科學和技術領域。
3. “zymotrophy” - 酶營養(yǎng),指通過攝取或利用微生物產(chǎn)生的酶來促進生長的過程。
4. “zymotically” - 描述一個過程或環(huán)境中的酶活性,例如“zymotically catalyzed reaction”表示一種由酶催化的反應。
5. “zymogenic” - 描述一種能夠產(chǎn)生酶的特性或微生物,例如“zymogenic bacteria”表示能產(chǎn)生酶的細菌。
6. “zymus” - 來自希臘語“zymos”,意為“酶”,可以作為名詞用于描述酶或酶相關的物質(zhì)。
7. “enzyme” - 來自英語單詞“enzyme”,是它的縮寫形式,用于描述酶本身。
8. “enzymolysis” - 酶解,一種化學過程,使用酶來分解有機物質(zhì)。
9. “apzymosis” - 翻譯為“去酶雜交”,是一種生物技術,通過去除細胞中的酶來增強雜交的成功率。
10. “zymotist” - 描述一個熱衷于酶科學或酶相關研究的人。
常用短語:
1. apoenzyme alp
2. apoenzyme brd
3. apoenzyme cdc
4. apoenzyme hmg
5. apoenzyme hpl
6. apoenzyme mrp
7. apoenzyme pbg
例句:
1. The apoenzyme is a key enzyme in the body that regulates various chemical reactions.
2. Apoenzyme alp plays a crucial role in maintaining healthy bones and joints.
3. Apoenzyme brd is essential for the production of neurotransmitters in the brain.
4. Apoenzyme cdc is involved in the degradation of harmful substances in the body.
5. Apoenzyme hmg is responsible for maintaining normal cholesterol levels in the blood.
6. Apoenzyme hpl is crucial for the breakdown of fats and carbohydrates in the body.
7. Apoenzyme mrp plays a role in transporting various substances throughout the body.
英文小作文:
Apoenzymes are essential enzymes that play a vital role in maintaining health and well-being. They regulate various chemical reactions in the body and are responsible for maintaining normal function of various organs and tissues. Apoenzymes alp, brd, cdc, hmg, hpl, and mrp are some of the most common types of apoenzymes that are found in the body. For example, apoenzyme alp helps maintain healthy bones and joints, while apoenzyme brd is crucial for the production of neurotransmitters in the brain. Apoenzymes are produced by cells and are essential for maintaining homeostasis within the body. Understanding the role of apoenzymes and their interactions with other enzymes and proteins is crucial for developing effective treatment strategies for various diseases and conditions.
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