(Press-News.org) Artificial intelligence can predict on- and off-target activity of CRISPR tools that target RNA instead of DNA, according to new research published in Nature Biotechnology.
The study by researchers at New York University, Columbia Engineering, and the New York Genome Center, combines a deep learning model with CRISPR screens to control the expression of human genes in different ways—such as flicking a light switch to shut them off completely or by using a dimmer knob to partially turn down their activity. These precise gene controls could be used to develop new CRISPR-based therapies.
CRISPR is a gene editing technology with many uses in biomedicine and beyond, from treating sickle cell anemia to engineering tastier mustard greens. It often works by targeting DNA using an enzyme called Cas9. In recent years, scientists discovered another type of CRISPR that instead targets RNA using an enzyme called Cas13.
RNA-targeting CRISPRs can be used in a wide range of applications, including RNA editing, knocking down RNA to block expression of a particular gene, and high-throughput screening to determine promising drug candidates. Researchers at NYU and the New York Genome Center created a platform for RNA-targeting CRISPR screens using Cas13 to better understand RNA regulation and to identify the function of non-coding RNAs. Because RNA is the main genetic material in viruses including SARS-CoV-2 and flu, RNA-targeting CRISPRs also hold promise for developing new methods to prevent or treat viral infections. Also, in human cells, when a gene is expressed, one of the first steps is the creation of RNA from the DNA in the genome.
A key goal of the study is to maximize the activity of RNA-targeting CRISPRs on the intended target RNA and minimize activity on other RNAs which could have detrimental side effects for the cell. Off-target activity includes both mismatches between the guide and target RNA as well as insertion and deletion mutations. Earlier studies of RNA-targeting CRISPRs focused only on on-target activity and mismatches; predicting off-target activity, particularly insertion and deletion mutations, has not been well-studied. In human populations, about one in five mutations are insertions or deletions, so these are important types of potential off-targets to consider for CRISPR design.
“Similar to DNA-targeting CRISPRs such as Cas9, we anticipate that RNA-targeting CRISPRs such as Cas13 will have an outsized impact in molecular biology and biomedical applications in the coming years,” said Neville Sanjana, associate professor of biology at NYU, associate professor of neuroscience and physiology at NYU Grossman School of Medicine, a core faculty member at New York Genome Center, and the study’s co-senior author. “Accurate guide prediction and off-target identification will be of immense value for this newly developing field and therapeutics.”
In their study in Nature Biotechnology, Sanjana and his colleagues performed a series of pooled RNA-targeting CRISPR screens in human cells. They measured the activity of 200,000 guide RNAs targeting essential genes in human cells, including both “perfect match” guide RNAs and off-target mismatches, insertions, and deletions.
Sanjana’s lab teamed up with the lab of machine learning expert David Knowles to engineer a deep learning model they named TIGER (Targeted Inhibition of Gene Expression via guide RNA design) that was trained on the data from the CRISPR screens. Comparing the predictions generated by the deep learning model and laboratory tests in human cells, TIGER was able to predict both on-target and off-target activity, outperforming previous models developed for Cas13 on-target guide design and providing the first tool for predicting off-target activity of RNA-targeting CRISPRs.
“Machine learning and deep learning are showing their strength in genomics because they can take advantage of the huge datasets that can now be generated by modern high-throughput experiments. Importantly, we were also able to use “interpretable machine learning” to understand why the model predicts that a specific guide will work well,” said Knowles, assistant professor of computer science and systems biology at Columbia Engineering, a core faculty member at New York Genome Center, and the study’s co-senior author.
“Our earlier research demonstrated how to design Cas13 guides that can knock down a particular RNA. With TIGER, we can now design Cas13 guides that strike a balance between on-target knockdown and avoiding off-target activity,” said Hans-Hermann (Harm) Wessels, the study’s co-first author and a senior scientist at the New York Genome Center, who was previously a postdoctoral fellow in Sanjana’s laboratory.
The researchers also demonstrated that TIGER’s off-target predictions can be used to precisely modulate gene dosage—the amount of a particular gene that is expressed—by enabling partial inhibition of gene expression in cells with mismatch guides. This may be useful for diseases in which there are too many copies of a gene, such as Down syndrome, certain forms of schizophrenia, Charcot-Marie-Tooth disease (a hereditary nerve disorder), or in cancers where aberrant gene expression can lead to uncontrolled tumor growth.
“Our deep learning model can tell us not only how to design a guide RNA that knocks down a transcript completely, but can also ‘tune’ it—for instance, having it produce only 70% of the transcript of a specific gene,” said Andrew Stirn, a PhD student at Columbia Engineering and the New York Genome Center, and the study’s co-first author.
By combining artificial intelligence with an RNA-targeting CRISPR screen, the researchers envision that TIGER’s predictions will help avoid undesired off-target CRISPR activity and further spur development of a new generation of RNA-targeting therapies.
“As we collect larger datasets from CRISPR screens, the opportunities to apply sophisticated machine learning models are growing rapidly. We are lucky to have David’s lab next door to ours to facilitate this wonderful, cross-disciplinary collaboration. And, with TIGER, we can predict off-targets and precisely modulate gene dosage which enables many exciting new applications for RNA-targeting CRISPRs for biomedicine,” said Sanjana.
Additional study authors include Alejandro Méndez-Mancilla and Sydney K. Hart of NYU and the New York Genome Center, and Eric J. Kim of Columbia University. The research was supported by grants from the National Institutes of Health (DP2HG010099, R01CA218668, R01GM138635), DARPA (D18AP00053), the Cancer Research Institute, and the Simons Foundation for Autism Research Initiative.
END
AI and CRISPR precisely control gene expression
David Knowles and collaborators develop RNA-based predictive models
2023-07-03
ELSE PRESS RELEASES FROM THIS DATE:
Older frail patients have a 1-in-3 chance of surviving CPR during surgery
2023-07-03
It’s estimated that around 25% of patients who have a cardiac arrest and receive cardiopulmonary resuscitation (CPR) in a normal hospital setting will survive. Those odds shoot up to 50% for patients who receive CPR during or in the immediate period following surgery, where they are closely monitored by specialists who know their medical history and can intervene without delay. But it’s unclear whether that trend applies to frail patients, who are often older and at a higher risk of experiencing CPR-related trauma and complications. Such uncertainty has led some doctors ...
Transplantation of genome-edited iPS cells delivers therapeutic molecules in vivo
2023-07-03
Induced pluripotent stem (iPS) cells have a great impact on biology and medicine, and they are expected to improve regenerative medicine. Since 2014 when a sheet of retinal pigment epithelial cells derived from iPS cells was transplanted into patients with age-related macular degeneration, clinical trials have been conducted with various cell types derived from iPS cells. While iPS cells derived from healthy individuals have been used so far, it is expected that transplantation therapy using iPS cells can be enhanced through genetic modification in the future.
Therefore, we addressed this possibility by utilizing a Fabry disease mouse model, ...
A spatiotemporal intelligent framework and experimental platform for urban digital twins
2023-07-03
Research Background
The era of Big Data features intelligence, ubiquity, and interconnection of all things. It comes with other advanced information technologies, such as the Internet, Cloud Computing (CC), Internet of Things (IoT), and Artificial Intelligence (AI) . Human society has also gradually entered the Ternary Space from the Binary Space. That is, from the Social Space (the sum of human behavior and social activities) to the Information Space (the computer, Internet, and data information built on physical space and social space) . The Ternary Space maps and digitally connect the urban physical and social ...
Sheep and cattle-killing disease carriers never take a break
2023-07-03
Bluetongue virus, an incurable cattle and sheep-killing disease, is spread by tiny flies once thought to disappear in winter. New research demonstrates that though they are harder to find when it’s cold, they remain active.
Bluetongue virus is common in cattle throughout most of the United States, particularly in the southwestern U.S. with nearly 20% of some California cattle herds infected. Due to concerns about spread of this virus, exports of U.S. cattle and cattle products to parts of Europe and Asia have been restricted to prevent contamination.
However, not all infected animals die. The main symptoms are elevated temperatures, lethargy, ...
2023 EPS Europhysics Prize
2023-07-03
Prof. Claudia Felser is a director at the Max Planck Institute for Chemical Physics of Solids in Germany, Prof. B. Andrei Bernevig is a Professor of Physics at Princeton University in the United States and Visiting Ikerbasque Professor at Donostia International Physics Center in Spain.
The Prize will be presented on Wednesday 6th September 2023, during the Awards Session of the 30th General Conference of the EPS Condensed Matter Division (CMD30), to be held in Milan (joint organization with FisMat in Italy). This prize has been awarded since 1975 (this is the 40th edition) and is one ...
A UCLA-led team has received a $925,000 CDC grant to track mpox outbreaks across the US
2023-07-03
The effort is led by Dr. David Talan, a professor of emergency medicine and infectious diseases in the UCLA Department of Emergency Medicine at the David Geffen School of Medicine at UCLA.
Summer 2022 saw an outbreak of the disease that infected people in several countries across the globe. That outbreak receded by the following fall after widespread public attention and vaccination of high-risk individuals, prompting the World Health Organization on May 11, 2023 to declare an end to mpox as a global health emergency.
But a recent outbreak among 20 people in Chicago, including some vaccine breakthrough ...
Endocrine Society’s Journal of the Endocrine Society earns first Impact Factor
2023-07-03
WASHINGTON—The Endocrine Society’s Journal of the Endocrine Society (JES) received its first Impact Factor score in 2022, while the Society’s other journals maintained high rankings on the prestigious measure of scholarly publishing.
The 2022 Impact Factors were released June 28 by Journal Citation Reports, an annual publication of Clarivate Analytics.
JES, which launched in 2017, is an open access journal providing rapid publication of clinical research, clinical practice information, and basic research in all areas of endocrinology. The publication also ...
Hedging strategy for coral restoration balances diversity, ecosystem benefits
2023-07-03
Resource managers and conservationists have been offered an innovative, new approach to selecting coral species for reef restoration. An international team of scientists worked together to develop this approach during a workshop organized by the University of Melbourne (U Melbourne) and the Australian Institute of Marine Science (AIMS). In a study published today in the Journal of Applied Ecology, this international team of scientists, led by a University of Hawai‘i (UH) at Mānoa researcher, revealed a strategy for choosing a set of key ...
New approaches against the consequences of birth asphyxia
2023-07-03
Brain damage caused by oxygen deficiency at birth is one of the main causes of death in newborns worldwide. Using a small animal model, researchers from the University Hospital Bonn (UKB) and DZNE tested treatment with 25 different active agents. Seven substances proved to be more effective than the standard therapy of artificial cooling: caffeine performed best. The results, published in the scientific journal Scientific Reports, could pave the way for new treatment options for newborns.
Children, who experience ...
Virtual exploration of chemical reactions
2023-07-03
A new online platform to explore computationally calculated chemical reaction pathways has been released, allowing for in-depth understanding and design of chemical reactions.
Advances in computational chemistry have proven a great boon in the field of reaction design, leading to the discovery of new reaction pathways for the synthesis of high-value compounds. Computational chemistry generates much data, and the process of organizing and visualizing this data is vital to be able to utilize it for future research.
A team of researchers from Hokkaido University, led by Professor Keisuke Takahashi at the Faculty of Chemistry and Professor Satoshi ...
LAST 30 PRESS RELEASES:
Urban highways cut opportunities for social relationships, says study
Alzheimer’s treatment may lie in the brain’s own cleanup crew
Climate change threatens future of banana export industry
World’s oldest impact crater found, rewriting Earth’s ancient history
Pledge to phase out toxic lead ammunition in UK hunting by 2025 has failed
Possible foundations of human intelligence observed for the first time
Breast cancer death rates have stopped going down
Developing zero-waste, sustainable smart polymer materials
AI has ‘great potential’ for detecting wildfires, new study of the Amazon rainforest suggests
Magnetic catalysts enhance tumor treatment via electronic density regulation
Quantum dot discovery for LEDs brings brighter, more eco-friendly displays
Phosphorus doping stabilizes high-energy polymeric nitrogen at ambient pressure
Maternal cannabis use triples risk of disruptive behaviour in children
Balancing Nutrition: Micronutrient study could help prevent childhood obesity in Pacific region
Lightening the load of augmented reality glasses
Sneaky clocks: uncovering Einstein’s relativity in an interacting atomic playground
The chances of anything coming from Mars
Scientists unlock clues to new treatments for muscular dystrophy
Anti-obesity drugs benefit kidney transplant recipients with type 2 diabetes
Cases of Parkinson’s disease set to reach 25 million worldwide by 2050
Throat microbiome holds clues to older Australians’ health
Diabetes drug could help cancer patients make better recovery
Seismic study of Singapore could guide urban construction and renewable energy development
Tufts scientists develop open-source software for modeling soft materials
Repurposed ALS drug becomes imaging probe to help diagnose neurodegeneration
AI can open up beds in the ICU
Are robotic hernia repairs still in the “learning curve” phase?
New STI impacts 1 in 3 women: Landmark study reveals men are the missing link
Feeling is believing: Bionic hand “knows” what it’s touching, grasps like a human
Damon Runyon Cancer Research Foundation awards $4.4 million to top young scientists
[Press-News.org] AI and CRISPR precisely control gene expressionDavid Knowles and collaborators develop RNA-based predictive models