
New method to reveal what drives brain diseases Scripps Research scientists develop CRISPR screen technology to determine disease mechanism from tissues with accelerated speed.
May 20, 2024
LA JOLLA, CA The brain is often referred to as a black box one that's difficult to peer inside and determine what's happening at any given moment. This is part of the reason why it's difficult to understand the complex interplay of molecules, cells and genes that underly neurological disorders. But a new CRISPR screen method developed at Scripps Research has the potential to uncover new therapeutic targets and treatments for these conditions.
The method, outlined in a study published in Cell on May 20, 2024, provides a way to rapidly examine the brain cell types linked to key developmental genes at a scale never done before helping unravel the genetic and cellular drivers of different neurological diseases.
We know that certain genetic variants in our genome can make us vulnerable or resilient towards different diseases, but which specific cell types are behind a disease? Which brain regions are susceptible to the genome mutations in those cells? These are the kinds of questions were trying to answer, says senior author Xin Jin, PhD, an assistant professor in the Department of Neuroscience at Scripps Research. With this new technology, we want to build a more dynamic picture across brain region, across cell type, across the timing of disease development, and really start understanding how the disease happened and how to design interventions.
Thanks to over a decade's efforts in human genetics, scientists have had access to long lists of genetic changes that contribute to a range of human illnesses, but knowing how a gene causes a disease is very different than knowing how to treat the illness itself. Every risk gene may impact one or several different cell types. Comprehending how those cell types and even individual cells impact a gene and affect disease progression is key to understanding how to ultimately treat that disease.
This is why Jin, along with the study's first author, Xinhe Zheng, a PhD candidate and the Frank J. Dixon Graduate Fellow at Scripps Research, co-invented the new technique, named in vivo Perturb-seq. This method leverages CRISPR-Cas9 technology and a readout, single-cell transcriptomic analysis, to measure its impact on a cell: one cell at a time. Using CRISPR-Cas9, scientists can make precise changes to the genome during brain development, and then closely study how those changes affect individual cells using single-cell transcriptomic analysis for thousands of cells in parallel.
Our new system can measure individual cells' response after genetic perturbations, meaning that we can paint a picture of whether certain cell types are more susceptible than others and react differently when a particular mutation happens, Jin says.
Previously, the method for introducing the genetic perturbations into the brain tissue was very slow, often taking days or even weeks, which created suboptimal conditions for studying gene functions related to neurodevelopment. But Jin's new screening method allows for rapid expression of perturbation agents in living cells within 48 hours meaning scientists can quickly see how specific genes function in different types of cells in a very short amount of time.
The method also enables a level of scalability that was previously impossible the research team was able to profile more than 30,000 cells in just one experiment, 10-20 times accelerated from the traditional approaches. In many of the brain regions they examined, such as the cerebellum, they were able to collect tens of thousands of cells that previous labeling methods could not reach.
In a pilot study using this new technology, Jin and her team's interest was piqued when they saw a genetic perturbation elicit different effects when perturbed in different cell types. This is important because those impacted cell types are the sites of action for particular diseases or genetic variants. Despite their smaller population representations, some low-abundant cell types may have a stronger impact than others by the genetic perturbation, and when we systematically look at other cell types across multiple genes, we see patterns. That's why single-cell resolution being able to study every cell and how each one behaves can offer us a systematic view, Jin says.
With her new technology in hand, Jin plans to apply it to better understand neuropsychiatric conditions and how certain cell types correspond with various brain regions. Moving forward, Jin says she's excited to see this type of technology applied to additional cell types in other organs in the body to better understand a wide range of diseases in terms of tissue, development and aging.
This work and the researchers involved were supported by funding from the Dorris Scholar Award, the Frank J. Dixon Fellowship, the Mark Pearson Endowed Fellowship, the Stanley Center for Psychiatric Research at the Broad Institute of MIT and Harvard, the Simons Foundation Autism Research Initiative (grant SFARI #736613), the National Institute of Health (grant R01HG012819), the Impetus grant, the One Mind Rising Star Award, the Klingenstein-Simons Fellowship, the Mathers Foundation, the Baxter Young Investigator Award, the Larry L. Hillblom Foundation, the Scripps Research Collaborative Innovation Fund, the Chan Zuckerberg Initiative, the Conrad Prebys Foundation, the Astera Institute, and James Fickle.
In addition to Jin, authors of the study, Massively parallel in vivo Perturb-seq reveals cell type-specific transcriptional networks in cortical development are Xinhe Zheng, Boli Wu, Yuejia Liu, Grace S. Clarke, Abdullah Ashiq, Joshua Park, Jiwen Li, Zhilin Wang, Tianbo Qi and Yunxiao Zhang of Scripps Resear
More from Scripps
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 ...
20/04/2024
New copper-catalyzed C-H activation strategy from Scripps Research Two-mode reactions inspired by human detox enzymes offer powerful new tools for drug discover...
12/04/2024
Scripps Research study reveals new approach for combating resting bacteria Blocking long phosphate molecules could eventually help treat chronic infections in...
06/04/2024
A simple, inexpensive way to make carbon atoms bind together A Scripps Research team uncovers a cost-effective method for producing quaternary carbon molecules,...
04/04/2024
Developing a vaccine for the zombie drug xylazine Scripps Research chemical biologists design an early proof-of-concept vaccine that could lead to the first...
30/03/2024
How blocking a neural receptor responsible for addiction could reduce alcohol use A Scripps Research team found that a new therapeutic that targets the kappa op...
13/03/2024
New computational strategy boosts the ability of drug designers to target proteins inside the membrane Customized-design approach could streamline the design of...
29/02/2024
Scripps Research scientists reveal how first cells could have formed on Earth New phospholipid discovery brings researchers closer to understanding how primordi...