right-icon

Back to blog

Research Highlights SYD-1 recruitment of neurexin for synatpogenesis - Echelon Biosciences

Lipid mediated intracellular organization of synaptic assembly

Proper nervous system function relies on small junctions between neurons that allow for communication. These are called synapses. ...

2 minute read
By Cameron Day
February 18

Proper nervous system function relies on small junctions between neurons that allow for communication. These are called synapses. In many organisms, the structural and molecular properties of synapses also underlie the mechanisms for memory encoding. However, the precise way synapses are assembled remains unclear. General models of synapse assembly (synaptogenesis) support the idea that connections between pre and post synaptic sites are an initiating event for synaptogenesis. Some data show, however, that protein organization at pre and post synaptic sites can occur independently of these trans-synaptic connections.

Neurexins are a family of cell-adhesion molecules (CAMs) that are known to promote trans-synaptic binding at presynaptic sites. As mentioned above, the prevailing idea regarding neurexins and other CAMs is that their trans-synaptic binding promotes synaptogenesis. Yet, there is a growing body of data from different animal models that shows neurexins are organized through intracellular interactions. Similarly, some synaptic assemblies and receptors appear to be pre-arranged prior to trans-synaptic connections. This raises the possibility that synaptic assembly may be internally organized, and CAMs may instead be involved in synaptic maturation. Frankel et al. set out to resolve some of these discrepancies using neurexin assembly as a guide.  

Model for SYD-1 recruitment of neurexin at synaptic sites via binding of PIP2 - Echelon Biosciences

The authors first use a combination of in vivo imaging and mutagenesis to show that neurexin is capable of clustering at synaptic sites without extracellular connections. This led them to perform a screen of genes that altered neurexin localization in synapses. Their results identified the scaffolding protein SYD-1 as being positively correlated with neurexin clustering. Subsequent imaging of neurexin and SYD-1 together showed that they are tightly associated in synaptic zones. SYD-1 is predicted to have domains that target it to cell membranes and allow for lipid interactions. The authors showed via molecular dynamics simulations and in vitro binding assays (Echelon, P-6001) that SYD-1 binds PI(4,5)P2. Follow up experiments revealed that SYD-1 recruitment to the membrane in cells requires PI(4,5)P2, where it is then stabilized by liquid-liquid phase separated proteins to facilitate clustering of neurexin.

Synapse assembly and maturation has been implicated in numerous neurodevelopmental disorders, and neurexins in particular have been associated with schizophrenia and autism spectrum disorders. The current data provide new mechanistic detail to models of synapse development and may be informative for approaching new therapies for neuronal disorders.

Read the full article here:

Intracellular protein-lipid interactions drive presynaptic assembly prior to neurexin recruitment

Neuron (2025)

0.2

/ 0.3

Related Articles

Stay informed with our informative blog posts.

Research Highlights
SYD-1 recruitment of neurexin for synatpogenesis - Echelon Biosciences

Lipid mediated intracellular organization of synaptic assembly

Proper nervous system function relies on small junctions between neurons that allow for communication. These are called synapses.

2 minute read
By Cameron Day
February 18

Research Highlights
Addition of anti-inflammatory lipids may alleviate immune activation from pDNA-LNPs - Echelon Biosciences

Addition of anti-inflammatory lipids blocks toxicity from pDNA-LNPs

Interest in ionizable lipids and lipid nanoparticles (LNPs) continues to accelerate, and as the field grows novel cargos and lipid

3 minute read
By Cameron Day
January 17

Research Highlights
Subpopulations of macrophages can promote tumor progression due to HA degradation and remodeling of the ECM - Echelon Biosciences

Certain macrophages degrade HA and drive tumor progression

The relationship between cancer and the immune system is complex. There is intense interest in harnessing immune cells to attack t

2 minute read
By Cameron Day
December 26

Research Highlights
Deep learning networks identify novel ionizable lipids - Echelon Biosciences

Deep learning network identifies novel, functional ionizable lipids

There has been increasing interest over the last decade in harnessing RNA for novel therapuetic modalities. With the approval of t

3 minute read
By Cameron Day
November 22

Research Highlights
hPAC channels are regulated by PI(4,5)P2 to enhance cell survival

PI(4,5)P2 regulates chloride channels during acidosis

Acidic pH is required in some intracellular organelles, but in the extracellular environment it can be highly damaging to cells. E

2 minute read
By Cameron Day
November 1

Research Highlights
Echelon Bioscience - lipid-dependent activation of STING

Lipid-dependent activation of the STING pathway

The cGAS/STING pathway is a critical part of the innate immune system that detects cytosolic DNA and promotes inflammatory respons

2 minute read
By Cameron Day
March 22

0.3

/ 0.3

Get in Touch

If you have any questions or would like to learn more about our services, feel free to reach out to us. We’re here to help!

Contact Echelon
Biosciences
Basket

Your Echelon Basket is empty.