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Interactions Between Signaling Pathways01:19

Interactions Between Signaling Pathways

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Signaling cascades usually lack linearity. Multiple pathways interact and regulate one another, allowing cells to integrate and respond to diverse environmental stimuli.
Convergence and divergence, and cross-talk between signaling pathways
Two distinct signaling pathways can converge on a single functional unit, which may either be a single protein or a complex of proteins. The response is either functionally distinct or synergistic between the two pathways but different from the response...
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Diversity in Cell Signaling Responses01:22

Diversity in Cell Signaling Responses

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The physiological function of a cell and cellular communication are outcomes of a range of extrinsic signals, intracellular signaling pathways, and cellular responses. No two cell types express the same repertoire of signaling components. Receptors are highly selective for their cognate ligands, but once activated, they can alter multiple cellular processes such as DNA transcription, protein synthesis, and metabolic activity. 
Graded and Abrupt Responses
Some signaling systems generate...
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Overview of Cell Signaling01:23

Overview of Cell Signaling

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Despite the protective membrane that separates a cell from the environment, cells need the ability to detect and respond to environmental changes. Additionally, cells often need to communicate with one another. Unicellular and multicellular organisms use a variety of cell signaling mechanisms to communicate with the environment.
Cells respond to many types of information, often through receptor proteins positioned on the membrane. For example, skin cells respond to and transmit touch...
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What is Cell Signaling?02:03

What is Cell Signaling?

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Despite the protective membrane that separates a cell from the environment, cells need the ability to detect and respond to environmental changes. Additionally, cells often need to communicate with one another. Unicellular and multicellular organisms use a variety of cell signaling mechanisms to communicate to respond to the environment.
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Amplifying Signals via Second Messengers01:15

Amplifying Signals via Second Messengers

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Many receptor binding ligands are hydrophilic; they do not cross the cell membrane but bind to cell-surface receptors. Thus, their message must be relayed by second messengers present in the cell cytoplasm. There are several second messenger pathways, each with its own way of relaying information. For example, the G protein-coupled receptors can activate both phosphoinositol and cyclic AMP (cAMP) second messenger pathways. The phosphoinositol pathway is active when the receptor induces...
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Intracellular Signaling Affects Focal Adhesions01:17

Intracellular Signaling Affects Focal Adhesions

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Integrins act both as extracellular input receivers and as intracellular processing activators. As their name suggests, integrins are entirely integrated into the membrane structure. Their hydrophobic membrane-spanning regions interact with the phospholipid bilayer's hydrophobic region. These membrane receptors provide extracellular attachment sites for effectors like hormones and growth factors. They activate intracellular response cascades when their effectors are bound and active.
Some...
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Gap Junctional Intercellular Communication: A Functional Biomarker to Assess Adverse Effects of Toxicants and Toxins, and Health Benefits of Natural Products
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细胞间和细胞内信号通路.

Gergana Dobreva1,2, Joerg Heineke3,4

  • 1ECAS (European Center for Angioscience), Department of Cardiovascular Genomics and Epigenomics, Mannheim Faculty of Medicine, Heidelberg University, Mannheim, Germany. gergana.dobreva@medma.uni-heidelberg.de.

Advances in experimental medicine and biology
|June 17, 2024
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概括

先天性心脏病 (CHD) 是由于心脏发育过程中细胞间通信中断而产生的. 了解这些分子信号通路对于解决终身并发症至关重要,如成人心脏病患者心力衰竭.

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科学领域:

  • 心血管生物学心血管生物学
  • 发育生物学是发展生物学.
  • 分子遗传学 分子遗传学

背景情况:

  • 心血管疾病是全球主要的死亡原因.
  • 手术的进步使大多数先天性心脏病 (CHD) 患者能够活到成年.
  • 成年心血管疾病幸存者经常经历长期并发症,包括早期心力衰竭,由于血液动力过载.

研究的目的:

  • 审查与心脏发育和功能有关的细胞间和细胞内信号传递机制.
  • 了解心脏缺陷和心脏病终身并发症的分子基础.
  • 探索胚胎和成人心脏中的细胞通信通路.

主要方法:

  • 关于心脏信号的科学文献的综述.
  • 专注于基因改造小鼠模型的发现.
  • 分析细胞间通信网络 (上心脏,内心脏,心肌,心肌细胞,内皮细胞,纤维细胞).

主要成果:

  • 先天性心脏病是由于怀孕早期的形态遗传模式被破坏而产生的.
  • 细胞间通信对于正常的心脏发育至关重要.
  • 在病理性血液动力学过载下,在产后心脏中发生类似的细胞交叉声.
  • 细胞内信号回路协调心脏的发育和功能.

结论:

  • 了解心脏中的分子信号传递对于治疗心脏病至关重要.
  • 细胞通信通路是未来研究先天性和获得性心脏病的关键目标.
  • 来自小鼠模型的洞察力为了解人类心脏发育和疾病提供了基础.