acylation reactions
酰化反应
protein acylation
蛋白质酰化
enzymatic acylations
酶促酰化
acylation process
酰化过程
chemical acylations
化学酰化
acylation mechanism
酰化机制
fatty acid acylations
脂肪酸酰化
chemical acylations are widely used in organic synthesis to modify functional groups.
化学酰化在有机合成中被广泛用于修饰官能团。
enzymatic acylations offer high selectivity and mild reaction conditions.
酶促酰化具有高选择性和温和的反应条件。
protein acylations play crucial roles in regulating cellular signaling pathways.
蛋白质酰化在调节细胞信号通路中起关键作用。
histone acylations influence gene expression through epigenetic modifications.
组蛋白酰化通过表观遗传修饰影响基因表达。
fatty acylations contribute to membrane protein anchoring and function.
脂肪酸酰化参与膜蛋白的锚定和功能。
lysine acylations affect protein stability and protein-protein interactions.
赖氨酸酰化影响蛋白质稳定性和蛋白质间相互作用。
acetylation, a common type of acylation, modifies chromatin structure.
乙酰化作为一种常见的酰化类型,修饰染色质结构。
reversible acylations allow dynamic regulation of protein activities.
可逆酰化允许蛋白质活性的动态调节。
acylation reactions often require catalysts such as acyl transferases.
酰化反应通常需要酰基转移酶等催化剂。
post-translational acylations expand the diversity of protein functions.
翻译后酰化扩展了蛋白质功能的多样性。
defects in protein acylations can lead to various metabolic disorders.
蛋白质酰化缺陷可能导致各种代谢紊乱。
advanced techniques enable site-specific acylations in complex biomolecules.
先进技术能够在复杂生物分子中进行位点特异性酰化。
acylation reactions
酰化反应
protein acylation
蛋白质酰化
enzymatic acylations
酶促酰化
acylation process
酰化过程
chemical acylations
化学酰化
acylation mechanism
酰化机制
fatty acid acylations
脂肪酸酰化
chemical acylations are widely used in organic synthesis to modify functional groups.
化学酰化在有机合成中被广泛用于修饰官能团。
enzymatic acylations offer high selectivity and mild reaction conditions.
酶促酰化具有高选择性和温和的反应条件。
protein acylations play crucial roles in regulating cellular signaling pathways.
蛋白质酰化在调节细胞信号通路中起关键作用。
histone acylations influence gene expression through epigenetic modifications.
组蛋白酰化通过表观遗传修饰影响基因表达。
fatty acylations contribute to membrane protein anchoring and function.
脂肪酸酰化参与膜蛋白的锚定和功能。
lysine acylations affect protein stability and protein-protein interactions.
赖氨酸酰化影响蛋白质稳定性和蛋白质间相互作用。
acetylation, a common type of acylation, modifies chromatin structure.
乙酰化作为一种常见的酰化类型,修饰染色质结构。
reversible acylations allow dynamic regulation of protein activities.
可逆酰化允许蛋白质活性的动态调节。
acylation reactions often require catalysts such as acyl transferases.
酰化反应通常需要酰基转移酶等催化剂。
post-translational acylations expand the diversity of protein functions.
翻译后酰化扩展了蛋白质功能的多样性。
defects in protein acylations can lead to various metabolic disorders.
蛋白质酰化缺陷可能导致各种代谢紊乱。
advanced techniques enable site-specific acylations in complex biomolecules.
先进技术能够在复杂生物分子中进行位点特异性酰化。
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