下丘脑多巴胺神经元通过持续的cAMP信号激发交配
Stephen X Zhang1, Andrew Lutas1, Shang Yang2
1Division of Endocrinology, Diabetes and Metabolism, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA, USA.
Nature
|August 26, 2021
概括
在雄性小鼠中, 垂体中多巴胺神经元控制交配驱动. 它们的活动通过在中部前视区域积累或抑制信号来调节交配动机和腹感.
科学领域:
- 神经科学
- 神经生物学
- 行为神经科学
背景情况:
- 短暂的神经调节显著影响神经回路和动机状态.
- 了解伴侣驱动的多巴胺基机制及其持续性至关重要.
研究的目的:
- 研究多巴胺神经元在雄性小鼠的交配动力和腹感调节中的作用.
- 阐明涉及交配相关多巴胺释放的细胞内信号通路及其行为影响.
主要方法:
- 使用光遗传学来刺激和抑制下丘脑中的特定多巴胺神经元 (AVPV/PVpo).
- 采用光学和分子技术来跟踪和操纵中细胞信号 (cAMP,PKA) 在中介前光学区域 (MPOA).
- 观察到与雄性小鼠的交配动机和腹感相关的行为反应.
主要成果:
- 专门的前视周周神经元 (AVPV/PVpo) 控制交配动力和腹感.
- 由cAMP和PKA活动驱动的中部前视区域 (MPOA) 的多巴胺释放激发交配兴趣.
- 成功的交配消除了MPOA中的多巴胺过渡物,对AVPV/PVpo神经元的操纵改变了交配的动机和腹感.
结论:
- 从AVPV/PVpo多巴胺神经元发出的信号的积累或抑制会在几分钟到几天内调节交配行为.
- 这些多巴胺神经元是交配行为开始和停止的关键调节者,在动机控制中发挥着双重作用.
相关概念视频
Yeast Signaling
16.4K
Yeasts are single-celled organisms, but unlike bacteria, they are eukaryotes (cells with a nucleus). Cell signaling in yeast is similar to signaling in other eukaryotic cells. A ligand, such as a protein or a small molecule released from a yeast cell, attaches to a receptor on the cell surface. The binding stimulates second-messenger kinases to activate or inactivate transcription factors that further regulate gene expression. Many of the yeast intracellular signaling cascades have similar...
16.4K
Endocrine Signaling
65.7K
Endocrine cells produce hormones to communicate with remote target cells found in other organs. The hormone reaches these distant areas using the circulatory system. This exposes the whole organism to the hormone but only those cells expressing hormone receptors or target cells are affected. Thus, endocrine signaling induces slow responses from its target cells but these effects also last longer.
65.7K
Diencephalon: Hypothalamus and Coordination
2.6K
The hypothalamus is a small yet highly complex and essential brain region that plays a crucial role in regulating various bodily functions. Anatomically, it is located at the base of the brain, just above the brainstem and below the thalamus, forming part of the limbic system.
The hypothalamus interacts with other brain regions, including the pituitary gland, through a direct physical connection called the hypothalamic-pituitary axis. The hypothalamus receives somatic and visceral inputs and...
The hypothalamus interacts with other brain regions, including the pituitary gland, through a direct physical connection called the hypothalamic-pituitary axis. The hypothalamus receives somatic and visceral inputs and...
2.6K
Regulation of Food Intake
1.0K
Short-term regulation of food intake primarily involves neural signals from the gastrointestinal (GI) tract, blood nutrient levels, and GI tract hormones. Communication between the gut and brain via vagal nerve fibers plays a significant role in evaluating the contents of the gut. Clinical studies have shown that protein ingestion produces a more prolonged response in these nerve fibers compared to an equivalent amount of glucose. Additionally, the activation of stretch receptors caused by GI...
1.0K
Autocrine Signaling
49.4K
Autocrine signaling is one of the many signaling mechanisms that function inside multicellular organisms to carry out intercellular communication. In this type of signaling mechanism, the same cell that secretes an extracellular signaling molecule also expresses the receptors to bind and respond to that signaling molecule.
Autocrine Signaling in Macrophages
Under normal physiological conditions, autocrine signaling is essential for maintaining homeostasis. This process is well characterized in...
Autocrine Signaling in Macrophages
Under normal physiological conditions, autocrine signaling is essential for maintaining homeostasis. This process is well characterized in...
49.4K
Neurotransmitters
1.9K
Neurotransmitters are essential chemical messengers within the nervous system, facilitating the communication between neurons. These chemical messengers, varying in function and effect, are critical for sustaining various aspects of neurological health and emotional well-being.
1.9K


