More than 5.4 million adults in the U.S. have autism. That鈥檚 about the populations of Los Angeles and Phoenix combined. Autism, or autism spectrum disorder (ASD), is a developmental disability that affects how a person experiences the world around them. If this definition sounds broad, there鈥檚 a reason for that. Autism manifests in many different ways.
鈥淎SD is characterized by deficits in reciprocal social interactions, restricted interest, and repetitive behaviors,鈥 says 黑料吃瓜资源 (CSHL) Professor Ivan Iossifov. 鈥淚t’s a very prevalent disorder, with one in a hundred girls and even more boys diagnosed.鈥
Despite its prevalence, there鈥檚 still a lot we don鈥檛 know about autism. Research has shown that early diagnosis, therapy, and treatment of co-occurring conditions can improve quality of life for people with autism. But without understanding its cause, many people aren鈥檛 diagnosed until later in life鈥攊f ever at all.
At CSHL, scientists research autism with a common goal in mind. They aim to help improve the lives of people with autism and their families.
A recent episode of 黑料吃瓜资源鈥檚 At the Lab podcast breaks down decades of autism research in less than three minutes.
Looking in the right places
Professor Iossifov has been working on the genetics side of autism research for years. His most recent innovation, a tool called (GPF), may one day enable researchers to make new discoveries about the disorder鈥檚 roots.
As a young scientist, however, Iossifov started his career with a very different subject in mind. 鈥淚n high school and college, I was interested in computers,鈥 he says. 鈥淏iology was completely foreign to me.鈥
After earning his master鈥檚 degree in computer science, Iossifov was introduced to computational biology. He enrolled in a Ph.D. program at Columbia University and began developing software that could extract information about molecular interactions from large chunks of text in scientific research journals.
鈥淚 started working on autism with the hope that the functional knowledge we鈥檇 extracted from articles could help us make progress with autism genetics,鈥 he says. 鈥淣ot only autism genetics鈥 related disorders, too鈥攂ut that鈥檚 where I started.鈥
Autism is a tricky disorder to research, in part because it鈥檚 so diverse. As hinted earlier, ASD can manifest with a wide range of symptoms and severities. Some people with the disorder face significant day-to-day challenges, including learning disabilities. They may be unable to speak, live on their own, or complete basic tasks without help. Others have little or no difficulty communicating, do extremely well in school, and have no problem living by themselves. Yet, despite the broad spectrum, some traits are common among people with autism, including sensitivity to stimuli, anxiety, difficulty in social situations, and special interests.
While at Columbia, Iossifov began collaborating with CSHL Professor Michael Wigler, a molecular biologist researching how spontaneous changes in DNA could lead to autism. Wigler and his team would make a big breakthrough in autism research in the 2000s. Using a new method of genomic analysis on a small collection of data, they discovered that spontaneous, or de novo, genetic mutations were a higher risk factor for autism than previously thought.
CSHL Professor Michael Wigler outlines his 鈥渉ypotheses of maximum hope.鈥
When Iossifov graduated, Wigler recruited him to join CSHL as a fellow. Around that time, Wigler鈥檚 colleagues were spearheading an effort to build a bigger dataset for continued research of de novo mutations in families that had only one child with autism. By 2011, this dataset, called the (SSC) from the (SFARI), would include genetic information on 2,659 volunteer families.
Iossifov began putting together projects using data collected from the SSC and a new technique called next-generation sequencing. 鈥淓verybody was crazy about next-generation sequencing at the time,鈥 he says. 鈥淲e successfully executed a large-scale project generating and analyzing whole-exome sequences for all 9,000 individuals from the SSC.鈥 (The exome is the part of the genome thought to hold the key to most genetic disorders.) This effort would set the stage for more groundbreaking projects to come.
In 2016, SFARI launched , the largest study of autism ever, with over 275,000 participants. Using SFARI family datasets, Wigler and Iossifov have made a series of important discoveries. In 2021, they found that even more in children whose siblings do not also have the condition. In 2023, they found that siblings with autism share more of their father鈥檚 genome than previously thought.
Today, Iossifov鈥檚 powerful new tool, 鈥嬧婫PF, helps researchers organize and analyze large-scale family datasets like SPARK and the SSC. It allows them to explore genetic variants more easily and upload their data securely to share it with the wider scientific community.
Using GPF, a scientist investigating a specific gene could look for it with the tool鈥檚 search function and see all variants in that gene across numerous autism genetics datasets. They could see how many families have variants in that gene, how many people have autism in each family, and how it manifests. A researcher could also search for specific variants across all genes in all datasets.
It took decades of research to identify the first genetic markers of autism. This platform could help researchers find new markers much faster. And that could make earlier diagnoses a reality for many families unknowingly living with autism.
How is autism passed down in families? It鈥檚 complicated. This video offers a few possible clues using easy-to-follow infographics.
From awareness to acceptance and support
鈥淭he science part of my mind wonders how amazing it would be if they could track down the genetic markers of autism,鈥 tells Marina Sarris of the Simons Foundation. Juricich is a SPARK participant who wasn鈥檛 formally diagnosed with autism until she was 58. 鈥淚f they could test infants, and give them the support they need immediately, how amazing it would be for that person. They wouldn鈥檛 have to suffer from not knowing that they have autism.鈥
Rates of autism diagnoses in children are rising, according to the Centers for Disease Control and Prevention. In 2020, about one in every 36 children was diagnosed by age 8鈥攗p from one in 44 in 2018. The trend is likely due in part to increases in awareness and testing.
At the same time, acceptance of autism is also increasing. 鈥淚n my view, autism doesn鈥檛 have to be a strength or a deficit,鈥 SPARK participant tells Sarris. 鈥淚t鈥檚 just a thing I have, a natural variation.鈥
The term 鈥榥eurodiversity鈥 was coined in the 1990s by a sociologist living with autism. Neurodiverse individuals, especially those with autism, may struggle to act in a way that suppresses or 鈥渕asks鈥 behaviors that come naturally to them but fall outside social norms. Masking can be uncomfortable, stressful, and exhausting. It often happens subconsciously, especially among those who are unaware they have autism.
Wigler and Iossifov鈥檚 work is made possible by thousands of volunteer families who support autism genetics research through the Simons Foundation. Video: SPARK
Research has shown that autism may be severely underdiagnosed in adults. ASD wasn鈥檛 even listed in the Diagnostic and Statistical Manual of Mental Disorders (DSM) psychiatric handbook until 1980. Women and people of color tend to be diagnosed later than white males, giving them fewer opportunities for intervention and therapy. A study from 2022 suggests that nearly .
CSHL research stands to bring that percentage down. Iossifov and Wigler鈥檚 work in identifying and categorizing genetic markers of autism has already allowed for more precise diagnoses. Today, they continue to build upon science and society鈥檚 growing knowledge of autism. In effect, they鈥檙e teaching us not only about the condition鈥攂ut also about ourselves.
鈥淚 think about how much of my life was wasted on masking and not being who I am, and not really knowing who I am,鈥 Juricich says. 鈥淚f I had known and I had gotten support when I was younger, things would have been so much easier.鈥
In time, Wigler and Iossifov鈥檚 efforts should help more people with autism get the support they may need when they need it most.
Written by: Margaret Osborne, Science Writer | [email protected] | 516-367-8455
