"Thus, snakes detect infrared signals through a mechanism involving radiant heating of the pit organ, rather than photochemical transduction," says the study.
“因此,蛇类通过陷窝器进行辐射供热的结构来探测红外信号,而不是靠光化学转换。”研究显示。
MAPK cascade pathway can converge extracellular signals and play an important role in signal transduction.
MAPK级联途径,具有信号汇总功能,在信号转导过程中起着重要作用。
ARF is the key factor in auxin signal transduction pathway, which can receive the signals caused by auxin and activate or repress the expression of the backward genes.
ARF是生长素信号转导途径中的关键因子,它可以接受生长素传递的信号,启动或是抑制下游基因的表达。
Integrins, present essentially on the surface of cells, are transmembrane glycoproteins that function as cell adhesion and transduction of signals.
整合素是普遍存在于细胞表面的跨膜糖蛋白,其主要功能是粘附和信号传递。
Ubiquitination plays important roles in regulating diverse cellular process in plants, including perception and signal transduction of various hormone and external environmental signals.
泛素化在细胞生命活动的许多进程中发挥着至关重要的作用,其中包括激素信号和极端环境信号的感受和传导。
Different expression of MAPK and ACS1 to GABA signals may be involved different signal transduction pathway.
MAPK和ACS1基因对GABA信号的不同表达模式可能与不同的信号途径有关。
Neuropeptides released from peripheral nerve in wound healing exert important transduction signals between impaired tissue and nervous system.
创伤愈合时,周围神经释放的神经肽在神经系统与损伤组织之间起着重要信号介导作用。
The results suggests that the PHA stimulation may affect both intranuclear and extranuclear DBP signals, and DBP may involve lymphoblastogenesis and inter-cellular genetic information transduction.
PHA刺激对淋巴细胞核内、外DBP的信号均有增高作用; DBP可能参与淋巴细胞的母细胞转化以及细胞间遗传信息的传递。
In human cells, interferon-inducible transmembrane protein 1(IFITM1) is a component of protein complexes involved in homotypic adhesion and the transduction of antiproliferative signals.
在人的细胞中,干扰素诱导跨膜蛋白1是一个蛋白复合物的组分,该复合物与同型粘连和抗增殖信号的转换密切相关。
In human cells, interferon-inducible transmembrane protein 1(IFITM1) is a component of protein complexes involved in homotypic adhesion and the transduction of antiproliferative signals.
在人的细胞中,干扰素诱导跨膜蛋白1是一个蛋白复合物的组分,该复合物与同型粘连和抗增殖信号的转换密切相关。
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