Date published: 2025-9-11

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Olfr913激活剂

Olfr913 is an olfactory receptor protein, which plays a critical role in the detection and discrimination of odorant molecules. Olfactory receptors like Olfr913 are part of a large family of G-protein coupled receptors (GPCRs), which are key players in the transduction of olfactory signals from the external environment into the nervous system. The functional activation of these receptors is essential for the perception of odors, and this process begins with the binding of specific odorant molecules to the olfactory receptor sites. Upon binding, these receptors undergo a conformational change that triggers the activation of associated G-proteins. This activation leads to a cascade of intracellular signaling events, including the generation of secondary messengers like cyclic AMP (cAMP) and the increase of intracellular calcium levels. These events are crucial for the amplification of the olfactory signal and its transmission to the brain, where it is interpreted as a distinct smell.

The general mechanisms of activation of olfactory receptors, including Olfr913, involve the specific interaction between the odorant molecule and the receptor. The structural compatibility between the odorant and the receptor is key to this interaction. Each receptor has a unique binding site that accommodates specific chemical structures, allowing for the selective perception of various odors. Once an odorant molecule like ethyl acetate or benzaldehyde binds to Olfr913, it induces a conformational change in the receptor. This change is the primary trigger for the activation of downstream signaling pathways. The G-protein coupled pathways play a pivotal role in this process, where the activated G-protein initiates a series of intracellular reactions. These reactions lead to the production of secondary messengers, which further amplify the signal and result in the opening of ion channels, ultimately leading to a neural response. The specificity of this activation process allows for the distinct perception of odors, with each receptor responding to particular chemical stimuli. The diverse range of chemicals that can activate Olfr913 exemplifies the broad specificity that olfactory receptors can have, enabling the detection of a wide array of odorant molecules. This specificity and sensitivity are fundamental to the olfactory system's ability to discern a vast and complex array of scents in the environment.

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产品名称CAS #产品编号数量价格应用排名

Ethyl Acetate, HPLC

141-78-6sc-360247
sc-360247A
1 L
4 L
$120.00
$320.00
(0)

乙酸乙酯通过与其嗅觉受体位点相互作用来激活 Olfr913。这种小型挥发性化合物很容易通过鼻粘膜扩散,到达嗅觉受体,与 Olfr913 结合,导致蛋白质结构发生构象变化,从而触发信号转导途径,激活受体。

Acetophenone

98-86-2sc-239189
5 g
$20.00
(0)

乙酰苯酮通过分子结合 Olfr913 的特定嗅觉受体位点来激活 Olfr913。这种化学物质与 Olfr913 的结构相容性使其能够有效结合,改变受体的构象。这种结合会触发下游 G 蛋白偶联通路的激活,这对 Olfr913 介导的嗅觉信号转导至关重要。

Isopentyl acetate

123-92-2sc-250190
sc-250190A
100 ml
500 ml
$105.00
$221.00
(0)

醋酸异戊酯因其类似香蕉的气味而闻名,它通过与 Olfr913 的特定嗅觉结合位点结合来激活 Olfr913。这种相互作用会诱导 Olfr913 发生构象变化,从而激活嗅觉信号转导途径。乙酸异戊酯与 Olfr913 的结合可有效触发受体的活化,从而导致嗅觉信号的传递。

Cinnamic Aldehyde

104-55-2sc-294033
sc-294033A
100 g
500 g
$102.00
$224.00
(0)

肉桂醛通过与Olfr913的嗅觉受体结合,触发构象变化,从而激活该蛋白。这种相互作用有助于激活相关G蛋白,从而启动一系列细胞内信号传导事件。

Anethole

104-46-1sc-481571A
sc-481571
10 g
100 g
$565.00
$310.00
(0)

茴香醚通过与受体结合位点的直接相互作用激活 Olfr913。这种结合会引起受体构象的改变,触发 G 蛋白偶联通路的激活。随后的细胞内信号级联涉及环磷酸腺苷(cyclic AMP)的升高,导致 Olfr913 的功能性激活,这对与茴香硫醚相关的嗅觉感知至关重要。

Vanillin

121-33-5sc-251423
sc-251423A
100 g
500 g
$43.00
$122.00
1
(1)

香兰素是一种常见的香料化合物,它通过与其嗅觉受体位点结合激活 Olfr913,从而引起结构改变。这种相互作用会激活细胞内的 G 蛋白偶联信号通路。这些途径的激活,特别是细胞内钙的增加,对嗅觉受体 Olfr913 的功能激活起着至关重要的作用。

D-Limonene

5989-27-5sc-205283
sc-205283A
100 ml
500 ml
$82.00
$126.00
3
(1)

柠檬烯通过与其特定的嗅觉受体结合位点相互作用来激活 Olfr913。这种相互作用会引起受体结构的改变,从而激活 G 蛋白耦合信号转导途径。这些途径的激活,尤其是涉及 cAMP 的途径的激活,对于 Olfr913 的功能激活至关重要,从而促进对柠檬烯柑橘香味的感知。

Eugenol

97-53-0sc-203043
sc-203043A
sc-203043B
1 g
100 g
500 g
$31.00
$61.00
$214.00
2
(1)

丁香酚通过与 Olfr913 的嗅觉受体位点结合来激活 Olfr913,使受体发生构象变化。这种结合事件会触发 G 蛋白偶联通路的激活,导致一连串的细胞内信号转导事件。这些事件,尤其是细胞内钙含量的增加,对嗅觉受体 Olfr913 的功能激活至关重要。

Methyl Salicylate

119-36-8sc-204802
sc-204802A
250 ml
500 ml
$46.00
$69.00
(1)

水杨酸甲酯通过与其特定的嗅觉受体位点结合来激活 Olfr913。这种相互作用会引起受体结构的改变,促进 G 蛋白耦合信号通路的激活。这些途径的激活,包括环磷酸腺苷水平的升高,在嗅觉受体 Olfr913 的功能激活和信号转导中起着至关重要的作用。

Geraniol

106-24-1sc-235242
sc-235242A
25 g
100 g
$44.00
$117.00
(0)

香叶醇是一种天然的香味化合物,它通过与 Olfr913 的嗅觉受体位点结合来激活 Olfr913。这种相互作用会导致受体构象发生变化,从而引发相关 G 蛋白耦合信号通路的激活。这些途径的激活,尤其是涉及环磷酸腺苷增加的途径的激活,对于 Olfr913 的功能激活至关重要。