Suppr超能文献

一种细胞黏附途径在盘基网柄菌发育过程中调节细胞间通讯。

A cell-adhesion pathway regulates intercellular communication during Dictyostelium development.

作者信息

Kibler Kirsten, Svetz Jessica, Nguyen Tu-Lan, Shaw Chad, Shaulsky Gad

机构信息

Graduate Program in Developmental Biology, Baylor College of Medicine, One Baylor Plaza, Houston, TX 77030, USA.

出版信息

Dev Biol. 2003 Dec 15;264(2):506-21. doi: 10.1016/j.ydbio.2003.08.025.

Abstract

Cell adhesion molecules play an important physical role in shaping the structure of multicellular organisms. Recent studies show that they also play a role in intracellular and intercellular signaling. We describe a cell adhesion pathway that is mediated by the intercellular communication genes comC, lagC, and lagD during Dictyostelium development. Disruptions of these genes result in strains that are unable to generate spores when developed in a pure population but are capable of sporulation when developed in chimerae with wild-type cells. In contrast, any pair-wise chimera of the three mutants fails to form spores. We postulate that the wild-type cells supply the mutant cells with a signal that partially rescues their sporulation. We also propose that the three mutants are deficient in the production of that signal, suggesting that the three genes function in one signaling pathway. In support of that notion, the mutant cells share common non-cell-autonomous prespore and prestalk-specific defects and a common pattern of developmental progression and regression. We provide transcriptional and functional evidence for a network in which comC inhibits lagC and activates lagD expression, lagC and lagD are mutually inductive, and the cell adhesion gene lagC is the terminal node in this signaling network.

摘要

细胞黏附分子在塑造多细胞生物体结构方面发挥着重要的物理作用。最近的研究表明,它们在细胞内和细胞间信号传导中也发挥作用。我们描述了一种细胞黏附途径,该途径在盘基网柄菌发育过程中由细胞间通讯基因comC、lagC和lagD介导。这些基因的破坏导致菌株在纯群体中发育时无法产生孢子,但在与野生型细胞形成嵌合体时能够形成孢子。相比之下,这三个突变体的任何两两组合的嵌合体都无法形成孢子。我们推测野生型细胞向突变体细胞提供了一种信号,部分挽救了它们的孢子形成。我们还提出这三个突变体在该信号的产生方面存在缺陷,这表明这三个基因在一个信号通路中发挥作用。支持这一观点的是,突变体细胞存在共同的非细胞自主前孢子和前柄特异性缺陷以及共同的发育进展和衰退模式。我们提供了转录和功能证据,证明存在一个网络,其中comC抑制lagC并激活lagD表达,lagC和lagD相互诱导,细胞黏附基因lagC是该信号网络的终端节点。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验