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相关概念视频

Activation and Inactivation of G Proteins01:22

Activation and Inactivation of G Proteins

10.8K
Heterotrimeric G proteins are guanine nucleotide-binding proteins. As the name suggests, heterotrimeric G proteins are composed of three subunits: alpha, beta, and gamma. They remain GDP-bound or GTP-bound inside the cells and switch between inactive/active states. The Gα subunit possesses the nucleotide-binding pocket that binds guanine nucleotides and switches between GDP or GTP-bound states. In contrast, the Gꞵ and Gγ subunits are always bound together with high...
10.8K
GTPases and their Regulation02:14

GTPases and their Regulation

2.8K
2.8K
GTPases and their Regulation02:14

GTPases and their Regulation

9.7K
Guanine nucleotide-binding proteins (G-proteins), also known as GTPases, are a superfamily of proteins that regulate many cellular processes, such as cell signaling, vesicular transport, and the regulation of cell shape and motility. Mutation or dysfunction of these proteins can lead to disease. There are around 40,000 known G-proteins that can broadly be classified into two groups ‒  small G-proteins consisting of a single domain and large multi-domain G-proteins.
Large G-proteins,...
9.7K
Eukaryotic Evolution01:24

Eukaryotic Evolution

40.1K
The endosymbiont theory is the most widely accepted theory of eukaryotic evolution; however, its progression is still somewhat debated. According to the nucleus-first hypothesis, the ancestral prokaryote first evolved a membrane to enclose DNA and form the nucleus. Conversely, the mitochondria-first hypothesis suggests that the nucleus was formed after endosymbiosis of mitochondria.
Contrary to the endosymbiont theory, the eukaryote-first hypothesis proposes that the simpler prokaryotic and...
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Gene Evolution - Fast or Slow?02:05

Gene Evolution - Fast or Slow?

3.4K
3.4K
Gene Evolution - Fast or Slow?02:05

Gene Evolution - Fast or Slow?

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The genomes of eukaryotes are punctuated by long stretches of sequence which do not code for proteins or RNAs. Although some of these regions do contain crucial regulatory sequences, the vast majority of this DNA serves no known function. Typically, these regions of the genome are the ones in which the fastest change, in evolutionary terms, is observed, because there is typically little to no selection pressure acting on these regions to preserve their sequences.
In contrast, regions which code...
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相关实验视频

萨拉-C:在进化和发展中的核心机制.

Andreas Demetriou1,2, Andreas Savva3, George Spanoudis3

  • 1Cyprus Academy of Sciences, Letters, and Arts, University of Cyprus, Nicosia, Cyprus demetriou.andreas.1@ucy.ac.cy.

The Behavioral and brain sciences
|November 3, 2025
PubMed
概括

一个新的认知机制,搜索,对齐,关联,抽象,认知 (SARA-C),统一了跨物种的认知复杂性. 这个模型解释了智力的演变,从简单的反射到人类的自我意识.

科学领域:

  • 认知科学 认知科学
  • 进化生物学 进化生物学
  • 神经科学是一个神经科学.

背景情况:

  • 认知复杂性 (Cognitive Complexity,简称CC) 在整个进化和发育时间表中出现.
  • 了解驱动CC的核心机制仍然是科学中的一个重大挑战.
  • 现有的模型往往侧重于特定的种类或认知能力,缺乏统一的框架.

研究的目的:

  • 提出和验证一种统一的机制,SARA-C (搜索,对齐,关联,抽象,认知),用于认知复杂性的出现.
  • 为了证明SARA-C如何解释不同物种认知能力的进化轨迹.
  • 将活动感知和特征联系与高级认知功能的发展联系起来.

主要方法:

  • 开发一个贝叶斯模型框架来模拟SARA-C机制的演变.
  • 分析不同种类中的特征链接和主动感应策略.
  • 在类动物,关节动物,头足动物,脊椎动物和人类之间进行比较研究.

主要成果:

  • 萨拉-C机制为进化历史上观察到的不断增长的认知复杂性提供了一个节的解释.
  • 贝叶斯模型成功地展示了SARA-C的逐步演变,从基本的反射到复杂的推理.
  • 特定的SARA-C进化阶段与不同动物群体中观察到的不同认知能力相关.

相关实验视频

结论:

  • 萨拉-C机制为理解认知复杂性的演变和发展提供了一个统一的框架.
  • 积极的感知和特征链接是复杂的认知功能出现的关键组成部分.
  • 这项研究为整个生命树的智力基础的基本过程提供了新的视角.