
How microRNAs act as a blueprint for the developing brain Scripps Research scientists reveal that microRNAs guide the development of Purkinje cells, a rare type of neuron linked to neurodevelopmental disorders.
April 02, 2025
LA JOLLA, CA Our brains contain billions of neurons and trillions of connections, and scientists are only beginning to understand the intricate process required to build this level of complexity. This includes uncovering the role of microRNAs: small, single-stranded molecules that help regulate protein production throughout the brain and the rest of the body.
Now, Scripps Research scientists have revealed how microRNAs impact Purkinje cell development a rare type of neuron with links to neurodevelopmental disorders. Their findings, published online in Neuron on April 2, 2025, could help uncover the complicated origins of these conditions, while also shedding light on how microRNAs are involved in aging, plasticity and other key brain processes.
Dissecting microRNA networks in the developing brain has important implications for understanding neurodevelopmental disorders, especially in Purkinje cells, which are the most affected neuronal subtype in autism spectrum disorder, says senior author Giordano Lippi, associate professor of neuroscience at Scripps Research.
Previous studies have suggested that microRNAs are critical for brain development, but their specific role in differentiation the process of stem cells maturing into specialized cells remained unclear.
When neurons develop, they need to at some point decide what subtype they will become, but we really didn't know much about the blueprint that instructs this differentiation, says Lippi. There was a lot of evidence suggesting that microRNAs might have a very important role here, but because the tools were not good enough, we couldnt really nail down that question until now.
The team focused on Purkinje cells, which comprise less than 1% of cells in the cerebellum. Purkinje cells integrate information from different parts of the brain and body, enabling us to make smooth, controlled movements. They are some of the largest brain cells and have a tree-like appearance a single axon trunk that supports a system of branches known as the dendritic arbor. Purkinje cells are also surrounded by structures called climbing fibers that wrap around the cells' dendrites and deliver information from other parts of the brain.
To attain their large size and elaborate arbor, Purkinje cell development involves prolonged periods of growth and branching. In mice, the long process of Purkinje cell development is complete around four weeks after birth.
To investigate how microRNAs are involved in neuron differentiation, the team developed new tools that temporarily turn off microRNA function during specific developmental windows. They found that microRNAs are critical during two phases in Purkinje cell development: inhibiting microRNAs during the first week after birth resulted in Purkinje cells with less complex dendritic arbors and smaller cerebellums. In contrast, inhibiting microRNAs during the third week after birth prevented the Purkinje cells from forming synaptic connections with climbing fibers. These findings shed light on how microRNAs control the precise timing of different aspects of Purkinje cell development that were previously thought to happen concurrently.
In collaboration with co-senior author Ian MacRae, professor of integrative structural and computational biology at Scripps Research, the team also developed a mouse model to identify which genes the microRNA molecules were targeting. Using this system, they identified two microRNAs critical for Purkinje cell development (miR-206 and miR-133) and four gene targets (Shank3, Prag1, Vash1, and En2). When they compared the Purkinje cell microRNA-target map to a map for pyramidal neurons a functionally different but similar-looking brain cell they showed that the two cell types follow very different microRNA blueprints during development.
For the first time, we were able to see that certain microRNAs are enriched in Purkinje cells but not in pyramidal neurons, says Lippi, and by turning these microRNAs off we show how important they are for the development of Purkinje cells' unique morphological features.
Notably, three of the targets involved in Purkinje cell development act as brakes for cell growth. When microRNA binds to these targets, it takes off the brakes, which allows Purkinje cells to grow their exaggerated dendritic arbor.
Some of these gene targets have been previously linked to neurodevelopmental disorders.
Our results seem to suggest that there might be cases in which dysregulation of the microRNA-target networks in specific areas of the brain might be causative to some of these diseases, says first author Norjin Zolboot, a postdoctoral fellow in the Lippi lab. We have not actually explored any of those mechanisms, but this is something that we are looking forward to investigating in the future.
Looking ahead, the team is also planning to use their new toolset to further investigate microRNAs' role in development, neural plasticity and aging.
With these new tools, a lot of doors are opening, says Lippi. We have barely scratched the surface of what microRNAs are doing, but now we have a way to thoroughly investigate all of this, and I think this is a very powerful toolset that will be broadly used by the field.
In addition to Lippi, MacRae, and Zolboot, authors of the study, MicroRNA mechanisms instructing Purkinje cell specification, include Yao Xiao, Jessica Du, Marwan Ghanem, Su Yeun Choi, Miranda Junn, Federico Zampa, Zeyi Huang of Scripps Research.
This study was supported by funding from the National Institutes of Health (R01NS121223, RF1MH126719, R35GM127090, R21OD029999, F31NS118982), Aut
More from Scripps
29/04/2025
Origin of life twist: New study challenges longstanding hypothesis on how first sugars formed Scripps Research and Georgia Institute of Technology scientists...
22/04/2025
Empowering antibodies to better activate the immune system Scripps Research scientists discover that a higher ratio of antibodies to viral protein helps engage ...
17/04/2025
A better way to predict a patient's risk of coronary artery disease Scripps Research scientists developed a model that more accurately identifies patients a...
16/04/2025
The very first structural images of a tuberculosis-fighting virus New insights from Scripps Research could advance phage therapies for the world's deadliest...
10/04/2025
FDA clears IND for clinical trial testing switchable CAR-T therapy in patients with autoimmune diseases, without chemotherapy Innovative cellular therapy has po...
08/04/2025
A gentle approach offers new hope for inflammatory lung diseases Scripps Research and aTyr Pharma scientists have revealed how the protein HARSWHEP calms inflam...
02/04/2025
How microRNAs act as a blueprint for the developing brain Scripps Research scientists reveal that microRNAs guide the development of Purkinje cells, a rare ty...
25/03/2025
Low-sugar' vaccine can provide broad immunity against coronavirus variants Scripps Research chemistry professor Chi-Huey Wong presents results from his team...
21/03/2025
How scientists uncovered memory's hidden architecture New structural hallmarks of memory storage discovered by Scripps Research could lead to treatments for...
11/03/2025
Compound found in common herbs inspires potential anti-inflammatory drug for Alzheimer's disease Scripps Research scientists created a stable form of carnos...
04/03/2025
How a crucial DNA repair protein works-and what it means for cancer treatment New structural blueprint is key for better targeting cancer cells, particularly th...
28/02/2025
How air pollution and wildfire smoke may contribute to memory loss in Alzheimer's disease Scripps Research scientists discovered how a chemical modification...
07/02/2025
Collaboration awards enable scientists to design new medicines, more precisely edit DNA and fight drug-resistant bacteria Scripps Research announces its 2024 re...
29/01/2025
Researchers illuminate new structures of a critical amyloid protein Insights could advance new drugs to treat the progressive, fatal disease known as transthyre...
24/01/2025
Long-acting injectable malaria drug enters first-in-human study Calibr-Skaggs' long-acting injectable (LAI) platform transforms oral malaria treatment atova...
04/01/2025
Virtual chemistry speeds up drug discovery By using computer modeling to predict chemical reactions, Scripps Research scientists were able to synthesize 25 vari...
17/12/2024
Brain cells remain healthy after a month on the International Space Station, but mature faster than brain cells on Earth Scripps Research scientists reveal micr...
10/12/2024
Scripps Research scientists create AI that watches videos by mimicking the brain A new, more sustainable AI model recognizes visual scenes by mirroring brain ...
06/12/2024
Scripps Research scientists identify mutation that could facilitate H5N1 bird flu virus infection and potential transmission in humans New findings underscore...
05/12/2024
Scripps Research scientists receive up to $12M to create universal vaccine for alphaviruses Funding from ARPA-H will be used to develop a vaccine for alphavirus...
19/11/2024
Researchers use biophysics to design new vaccines against RSV and related respiratory viruses Scripps Research scientists improved existing vaccines by analyzin...
30/10/2024
Calibr-Skaggs announces initial dosing of a first-in-class regenerative lung medicine in a phase 1 trial for idiopathic pulmonary fibrosis CMR316 is a once-week...
24/10/2024
Human mini-brains reveal autism biology and potential treatments By creating personalized brain organoids in the lab, Scripps Research scientists showed how ...
16/10/2024
Scripps Research scientists discover chemical probes for previously undruggable cancer target Scientists uncover how small molecules interact with a cancer-re...
02/10/2024
Professor Stuart Lipton awarded $5 million to study the chemical biology of air pollution on the human brain The grant from the NIA/NIH will support research in...
01/10/2024
Seeing double: Designing drugs that target twin cancer proteins Scripps Research scientists used knowledge about a protein to characterize drugs that selectiv...
27/09/2024
Scripps Research scientist Ilia Droujinine receives over $3 million to reveal the body's interorgan networks The awards from the NIDDK and the LLHF will let...
20/09/2024
Genetic tracing at the Huanan Seafood market further supports COVID animal origins An international collaboration between Scripps Research, University of Arizon...
12/09/2024
Scripps Research scientists expand the genetic alphabet to create new proteins The novel method uses sets of four RNA nucleotides rather than the natural three ...
27/08/2024
New way to potentially slow cancer growth Using a combination of two protein-mapping methods, Scripps Research scientists uncover novel proteins that could be t...
22/08/2024
Gut molecule slows fat burning during fasting Scripps Research scientists discovered a molecule produced by roundworm intestines that signals the brain to slow ...
14/08/2024
Using wrist-worn activity trackers to help patients reduce long COVID symptoms New Scripps Research trial aims to validate the use of wearables in guiding parti...
09/08/2024
Scripps Research chemists develop new sustainable reaction for creating unique molecular building blocks The building blocks can be used to create polymers with...
26/07/2024
Timing matters: Scripps Research study shows ways to improve health alerts Wearable health sensors are a powerful tool in disease detection and in stemming the ...
17/07/2024
New sleep study aims to understand cognitive decline in women Scripps Research launches digital trial to identify sleep-related risk factors for Alzheimer's...
11/07/2024
Researchers identify brain region involved in oxycodone relapse Study by Scripps Research scientists suggests future therapies for opioid and alcohol addiction....
11/07/2024
Researchers pinpoint brain cells that delay first bite of food A set of neurons identified by Scripps Research scientists influence the start of eating and drin...
09/07/2024
Nine new faculty join Scripps Research The newly appointed faculty are making transformative discoveries in areas ranging across drug discovery, neuroscience, c...
04/07/2024
Drug-like inhibitor shows promise in preventing flu Scripps Research scientists have developed a potential drug-like molecule that blocks the first stage of typ...
03/07/2024
Advancing toward a preventative HIV vaccine Across four preclinical studies, Scripps Research, IAVI, and additional collaborators make headway in stimulating th...
21/06/2024
Neuroscientist Xin Jin granted Pew and McKnight awards Jin is named a 2024 Pew Scholar and receives the McKnight Scholar Award, supporting her research in mappi...
04/06/2024
Esteemed life sciences attorney Barbara Kosacz joins Scripps Research Board of Directors
June 03, 2024
LA JOLLA, CA Scripps Research's vision to translat...
24/05/2024
Scripps Research's Skaggs Graduate School awards doctoral degrees to 32nd graduating class Skaggs family also honored at commencement ceremony as first reci...
23/05/2024
Scripps Research scientists uncover new molecular drivers of Alzheimer's By recording detailed electrical and protein measurements of individual brain cell...
21/05/2024
New method to reveal what drives brain diseases Scripps Research scientists develop CRISPR screen technology to determine disease mechanism from tissues with ac...
20/05/2024
Scripps Research chemists develop new method for making gamma chiral centers on simple carboxylic acids C-H activation-based method should speed drug molecule ...
17/05/2024
Scripps Research chemist Donna Blackmond elected to the Royal Society of the U.K. Blackmond's wide-ranging work has shaped origin of life theories, our unde...
08/05/2024
Professor emeritus John (Jack) Johnson elected to the National Academy of Sciences Johnson's multi-disciplinary research has been instrumental in shaping ou...
03/05/2024
TIME100 Health list features Scripps Research Executive Vice President Eric Topol New list honors 100 individuals who most influenced global health in 2024.
M...
02/05/2024
New technique improves T cell-based immunotherapies for solid tumors Scripps Research scientists help T cells more effectively kill solid tumors cells in vitro ...