这个药物能阻断一种叫NMDA受体的蛋白分子的活动,这种分子在多种形式的记忆和学习过程中有重要作用。
This blocks the activity of protein molecules called NMDA receptors, which are important in many types of learning and memory.
分子生物学自始就丰富了我们对离子通道和信号转导中重要的受体认识。
Initially molecular biology enriched our understanding of ion channels and receptors important for signaling.
粘附分子和粘附受体在这一过程中起重要作用,多种细胞因子和趋化因子参与了单核细胞募集的调节。
This is called "monocyte recruitment". Adhesive molecules and adhesive receptors take part and play an important role in the process.
We're going to talk about this kind of non-covalent interaction more when we talk about the immune system, because one example of ligand and receptors that's important in the immune system are antigens - foreign molecules, and antibodies - molecules that we produce.
当我们讲到免疫系统的时候,会更详细地谈到这种非共价化合反应,因为在免疫系统中,一个重要的配体受体结合反应,就是抗原,即外源分子,与抗体,这个人体自身产生的分子结合
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