PsyPost
  • Mental Health
  • Social Psychology
  • Cognitive Science
  • Neuroscience
  • About
No Result
View All Result
Join
My Account
PsyPost
No Result
View All Result
Home Exclusive Mental Health

A new twist on neuro disease: Discovery could aid people with dystonia, Parkinson’s and more

by University of Michigan Health System
June 17, 2014
Reading Time: 4 mins read
Share on TwitterShare on Facebook

Twist and hold your neck to the left. Now down, and over to the right, until it hurts. Now imagine your neck – or arms or legs – randomly doing that on their own, without you controlling it.

That’s a taste of what children and adults with a neurological condition called dystonia live with every day – uncontrollable twisting and stiffening of neck and limb muscles.

The mystery of why this happens, and what can prevent or treat it, has long puzzled doctors, who have struggled to help their suffering dystonia patients. Now, new re-search from a University of Michigan Medical School team may finally open the door to answering those questions and developing new options for patients.

In a new paper in the Journal of Clinical Investigation, the researchers describe new strains of mice they’ve developed that almost perfectly mimic a human form of the disease. They also detail new discoveries about the basic biology of dystonia, made from studying the mice.

They’ll soon make the mice available for researchers everywhere to study, to accelerate understanding of all forms of dystonia and the search for better treatments. The lack of such mice has held back research on dystonia for years.

The U-M team’s success in creating a mouse model for the disease came only after 17 years of stubborn, persistent effort – often in the face of setbacks and failure.

Led by U-M neurologist William Dauer, M.D., the team tried to figure out how and why a gene defect leads to an inherited form of dystonia that, intriguingly, doesn’t start until the pre-teen or teen years, after which it progresses for many years but then stops getting worse after the person reaches their mid-20s.

The gene defect responsible, called DYT1, causes brain cells to make a less-active form of a protein called torsinA. But despite more than a decade of effort by Dauer’s team and many others around the world, no one has been able to translate this information into an animal model with dystonia’s characteristic movements.

Google News Preferences Add PsyPost to your preferred sources

Using the childhood onset as a clue, Dauer and his team used cutting-edge genetic technology to severely impair torsinA function during early brain development. This novel twist caused the new mice to closely mimic the human disease: they don’t develop dystonia until they reach preteen age in “mouse years,” and their symptoms stop getting worse after a while.

With this powerful tool in hand, Dauer’s team were now able to peer into the brains of these animals to begin to unravel the mysteries of the disease.

In an unexpected development, they found that the lack of torsinA in the brains of dystonic mice led to the death of neurons – a process called neurodegeneration – in just a few highly localized parts of the brain that control movement. Like the dystonic movements, this neurodegeneration began in young mice, progressed for a time, and then became fixed.

“We’ve created a model for understanding why certain parts of the brain are more vulnerable to prob-lems from a certain genetic insult,” says Dauer, an associate professor in the U-M departments of Neu-rology and Cell & Developmental Biology.

“In this case, we’re showing that in dystonia, the lack of this particular protein during a critical window of time is causing cell death. Every disease is telling us something about biology — one just has to listen carefully.”

More discoveries to come

Dauer and his team don’t yet know why only one-third of human DYT1 gene mutation carriers develop primary dystonia during their school years, and why those who don’t develop the disease before their early 20s will never go on to develop it.

They believe some critical events during the brain’s development in infancy and childhood may have to do with it – and they’re already working to explore that question in mice.

They also believe their mouse model will help them and other researchers understand how dystonia occurs in people who have Parkinson’s disease, Huntington’s disease, or damage caused by a stroke or brain injury. Some people develop dystonia without either a known gene defect or any of these other diagnoses – a condition called idiopathic dystonia.

In all these cases, as in people with DYT1 mutations, dystonia’s twisting and curling motions likely arise from problems in the area of the brain that controls the body’s motor control system.

In other words, something’s going wrong in the process of sending signals to the nerves that control muscles involved in movement. Studying a “pure” form of dystonia using the mice will allow researchers to understand just what’s going on.

The team’s ultimate goal is to find new treatments for all kinds of dystonia. Currently, children, teens and young adults who develop it can take medications or even opt for a form of neurosurgery called deep brain stimulation. But the drugs carry major side effects and are only partially effective – and brain surgery carries its own risks. Dauer and his team are working to screen drug candidates.

RELATED

Bright medical professional examining brain MRI scans in a clinical setting for neurological or psychological research.
Mental Health

Brain scans link tissue reductions to aggression in schizophrenia

June 6, 2026
Ozempic and similar drugs may lower dementia risk for diabetes patients
Anxiety

Popular weight loss and diabetes drugs show no biological link to mental illness

June 6, 2026
Mental health might be emerging as a source of political identity, study finds
Mental Health

Mental health might be emerging as a source of political identity, study finds

June 6, 2026
Intolerance of uncertainty is tied to emotion labeling in people with autistic traits
Autism

Intolerance of uncertainty is tied to emotion labeling in people with autistic traits

June 6, 2026
Political anger fuels support for violence mainly when voters feel ignored by the system
Depression

Local changes in income inequality do not predict teen depression, massive study finds

June 5, 2026
Scientists found a split-second shortcut your brain takes when reading numbers
Hypersexuality

Teen pornography habits tied to dominant behavior and lower relational satisfaction

June 4, 2026
MDMA therapy: Side effects appear mild, but there are problems with the evidence
MDMA

Can MDMA cure PTSD? A new review of the evidence says it’s too early to tell

June 4, 2026
Futuristic low-poly illustration of a human brain with vibrant lighting and geometric background.
Depression

Teenage girls with depression show altered brain responses to repeated social rejection

June 4, 2026

Follow PsyPost

The latest research, however you prefer to read it.

Daily newsletter

One email a day. The newest research, nothing else.

Google News

Get PsyPost stories in your Google News feed.

Add PsyPost to Google News
RSS feed

Use your favorite reader. We also syndicate to Apple News.

Copy RSS URL
Social media
Support independent science journalism

Ad-free reading, full archives, and weekly deep dives for members.

Become a member

Trending

  • The location of your body fat is linked to how fast your brain ages
  • Psychopathy and Machiavellianism often look identical, but daily behavior suggests otherwise
  • Not having children isn’t linked to lower happiness, but having more than you wanted is
  • Visual experience physically shapes the brain’s feedback loops
  • Scientists have found a geospatial link between soil fertility and national intelligence scores

Science of Money

  • Economists pull apart the two reasons to raise the minimum wage
  • Can ChatGPT beat the S&P 500? Eight months of daily picks suggest no
  • When inheritances shrink inequality, and when they widen it: A six-country look at the tipping point
  • Why winning makes some gamblers bet bigger: the psychological traits behind the “house money” effect
  • Why people think bankers are greedier than students (and why they may be wrong)

PsyPost is a psychology and neuroscience news website dedicated to reporting the latest research on human behavior, cognition, and society. (READ MORE...)

  • Mental Health
  • Neuroimaging
  • Personality Psychology
  • Social Psychology
  • Artificial Intelligence
  • Cognitive Science
  • Psychopharmacology
  • Contact us
  • Disclaimer
  • Privacy policy
  • Terms and conditions
  • Do not sell my personal information

(c) PsyPost Media Inc

Welcome Back!

Login to your account below

Forgotten Password?

Retrieve your password

Please enter your username or email address to reset your password.

Log In

Add New Playlist

Subscribe
  • My Account
  • Cognitive Science Research
  • Mental Health Research
  • Social Psychology Research
  • Drug Research
  • Relationship Research
  • About PsyPost
  • Contact
  • Privacy Policy

(c) PsyPost Media Inc