Septins, a highly conserved family of GTP-binding proteins, were originally identified in a genetic screen for S. cerevisiae mutants defective in cytokinesis [1, 2]. In yeast, septins maintain the compartmentalization of the yeast plasma membrane during cell division by forming rings at the cortex of the bud neck, and these rings establish a lateral diffusion barrier. In contrast, very little is known about the functions of septins in mammalian cells [3, 4] including postmitotic neurons [5-7]. Here, we show that Septin 7 (Sept7) localizes at the bases of filopodia and at branch points in developing hippocampal neurons. Upon downregulation of Sept7, dendritic branching is impaired. In mature neurons, Sept7 is found at the bases of dendritic spines where it associates with the plasma membrane. Mature Sept7-deficient neurons display elongated spines. Furthermore, Sept5 and Sept11 colocalize with and coimmunoprecipitate with Sept7, thereby arguing for the existence of a Septin5/7/11 complex. Taken together, our findings show an important role for Sept7 in regulating dendritic branching and dendritic-spine morphology. Our observations concur with data from yeast, in which downregulation of septins yields elongated buds, suggesting a conserved function for septins from yeast to mammals.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.cub.2007.08.042DOI Listing

Publication Analysis

Top Keywords

branching dendritic-spine
8
dendritic-spine morphology
8
plasma membrane
8
dendritic branching
8
septins
5
sept7
5
gtp-binding protein
4
protein septin
4
septin critical
4
critical dendrite
4

Similar Publications

ATAD1 Regulates Neuronal Development and Synapse Formation Through Tuning Mitochondrial Function.

Int J Mol Sci

December 2024

Hefei National Laboratory for Physical Sciences at the Microscale, MOE Key Laboratory for Membrane-Less Organelles & Cellular Dynamics, Division of Life Sciences and Medicine, University of Science and Technology of China, Hefei 230026, China.

Mitochondrial function is essential for synaptic function. ATAD1, an AAA+ protease involved in mitochondrial quality control, governs fission-fusion dynamics within the organelle. However, the distribution and functional role of ATAD1 in neurons remain poorly understood.

View Article and Find Full Text PDF

Objective: Genetic Absence Epilepsy Rat from Strasbourg (GAERS), a rodent model genetically predisposed to absence epilepsy, serves as an experimental tool to elucidate the neuronal mechanisms underlying human absence epilepsy. This study aimed to investigate the morphological features of dendrites and dendritic spines of pyramidal neurons in somatosensory cortex and hippocampus of Wistar and GAERS rats.

Material And Method: Adult male GAERS (n = 5) and control Wistar (n = 5) rats were sacrificed by transcardial perfusion and brains were removed.

View Article and Find Full Text PDF

Reactivation of mTOR signaling slows neurodegeneration in a lysosomal sphingolipid storage disease.

Neurobiol Dis

January 2025

Genetics and Biochemistry Branch, National Institute of Diabetes and Digestive and Kidney Diseases, National Institutes of Health, Bethesda, MD, USA. Electronic address:

Sandhoff disease, a lysosomal storage disorder, is caused by pathogenic variants in the HEXB gene, resulting in the loss of β-hexosaminidase activity and accumulation of sphingolipids including GM2 ganglioside. This accumulation occurs primarily in neurons, and leads to progressive neurodegeneration through a largely unknown process. Lysosomal storage diseases often exhibit dysfunctional mTOR signaling, a pathway crucial for proper neuronal development and function.

View Article and Find Full Text PDF

Enriched environment rescues bisphenol A induced anxiety-like behavior and cognitive impairment by modulating synaptic plasticity.

Ecotoxicol Environ Saf

December 2024

Neuroscience Laboratory for Cognitive and Developmental Disorders, Department of Anatomy, Medical College of Jinan University, Guangzhou, Guangdong 510630, China. Electronic address:

Article Synopsis
  • Bisphenol A (BPA) is an endocrine disruptor that negatively impacts the nervous system, leading to anxiety-like behavior and cognitive impairments in mice.
  • This study investigates whether an enriched environment (EE) can counteract these effects by enhancing cognitive behavior and reducing anxiety in mice exposed to BPA.
  • Results showed that EE treatment improves dendritic spine development, restores excitatory synaptic transmission, and alleviates behavioral issues associated with BPA exposure, highlighting the neuroprotective role of EE.
View Article and Find Full Text PDF
Article Synopsis
  • - Deep Reinforcement Learning (DRL) is used to simulate how biological agents learn based on rewards, and researchers modified DRL to mimic the effects of dendritic spine loss seen in major depressive disorder (MDD).
  • - This simulated spine loss led to various MDD-like behaviors in the AI, such as loss of pleasure (anhedonia), increased impatience for rewards (temporal discounting), and changes in how the AI explores or exploits options.
  • - The findings suggest that MDD may be more related to reduced brain connectivity rather than just chemical imbalances, indicating potential treatment avenues that focus on enhancing brain plasticity and synapse formation.
View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!