合酶的意思、翻譯和例句

是什麼意思

「合酶」是指一類催化生化反應的酶,通常參與合成或建構生物大分子,如蛋白質、核酸或多醣等。合酶在細胞內的代謝過程中起著重要作用,幫助細胞合成所需的生物分子,並維持生物體的正常功能。

依照不同程度的英文解釋

  1. A substance that helps make things in living organisms.
  2. A helper for building important parts of cells.
  3. A biological catalyst that helps create molecules.
  4. A protein that speeds up the process of making larger molecules.
  5. A type of protein that assists in the synthesis of other important compounds.
  6. An enzyme that facilitates the assembly of complex biological structures.
  7. A biochemical catalyst involved in the construction of biomolecules.
  8. A specialized protein that catalyzes the formation of complex organic compounds.
  9. A biological catalyst that plays a crucial role in the biosynthesis of macromolecules.
  10. A class of enzymes that catalyze the synthesis of biological macromolecules.

相關英文單字或片語的差別與用法

1:Synthetase

用法:

合酶的一種特定類型,專門催化合成反應,通常涉及將小分子連接成更大的分子。這些酶在細胞代謝中扮演著重要角色,特別是在合成氨基酸、脂肪酸和核苷酸等基本構件時。

例句及翻譯:

例句 1:

這種合酶在脂肪酸合成中是必不可少的。

This synthetase is essential for fatty acid synthesis.

例句 2:

科學家們正在研究這種合酶的結構和功能。

Scientists are studying the structure and function of this synthetase.

例句 3:

缺乏這種合酶可能導致代謝疾病。

A deficiency in this synthetase can lead to metabolic disorders.

2:Synthesis enzyme

用法:

泛指所有參與合成過程的酶,這些酶促進細胞內的化學反應,幫助合成各種生物分子。這些酶在細胞的生長和修復過程中至關重要。

例句及翻譯:

例句 1:

這種合成酶在DNA複製過程中發揮重要作用。

This synthesis enzyme plays a crucial role in DNA replication.

例句 2:

合成酶的活性受到細胞內環境的影響。

The activity of synthesis enzymes is influenced by the cellular environment.

例句 3:

研究表明,某些合成酶的缺失會影響細胞的正常功能。

Studies show that the absence of certain synthesis enzymes can affect normal cellular function.

3:Anabolic enzyme

用法:

這類酶專門參與合成過程,通常涉及從小的分子合成更大的分子,這是細胞代謝中的一個重要方面。這些酶在生長、修復和維持細胞結構方面扮演著關鍵角色。

例句及翻譯:

例句 1:

這種合成酶是一種典型的合成酶,負責合成蛋白質。

This enzyme is a typical anabolic enzyme responsible for protein synthesis.

例句 2:

合成酶的活性對於細胞的生長至關重要。

The activity of anabolic enzymes is crucial for cell growth.

例句 3:

許多合成酶在生物合成途徑中發揮著重要作用。

Many anabolic enzymes play significant roles in biosynthetic pathways.