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Misfolded Proteins Snagged by "Catcher's Mitt" Formed by Sep15

When folding fails among the proteins that regulate essential cellular functions, the result can lead to one of a multitude of serious diseases ranging from emphysema and cystic fibrosis to Alzheimer’s disease. Fortunately, our bodies have a quality-control sy

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This guide cannot diagnose a condition or recommend a personal treatment plan. Discuss medical questions with a qualified professional.

When folding fails among the proteins that regulate essential cellular functions, the result can lead to one of a multitude of serious diseases ranging from emphysema and cystic fibrosis to Alzheimer’s disease. Fortunately, our bodies have a quality-control system that identifies misfolded proteins and marks them either for additional folding work or destruction. However, how this quality-control process functions is not fully understood. Now, researchers at the University of Massachusetts (UMass) Amherst have now made a major leap forward in our understanding of how this system works by discovering the “hot spot” where all the action takes place.

The findings are published in the Proceedings of the National Academy of Sciences in an article entitled “Insights into the interaction between UGGT, the gatekeeper of folding in the ER, and its partner, the selenoprotein SEP15.”

Senior authors Daniel Hebert, professor of biochemistry and molecular biology at UMass Amherst, and Lila Gierasch, distinguished professor of biochemistry and molecular biology and chemistry at UMass Amherst, along with co-author, Kevin Guay, a graduate student in the molecular cellular biology program at UMass Amherst, had shown in previous research that UGGT acts as a “gatekeeper” by reading carbohydrate tags, called N-glycans, embedded into the protein to determine whether or not the protein is correctly folded.

“But there’s something else at work,” explained lead-author Rob Williams, a postdoctoral fellow with a joint appointment in both Hebert’s and Gierasch’s labs. “There’s an exclusive club of proteins called ‘selenoproteins,’ which contain the rare element selenium. Out of approximately 20,000 different proteins in our bodies, only 25 of them are selenoproteins. The UGGT partner Sep15 is a selenoprotein. Sep15 is always associated with UGGT. But until now, no one knew what it was doing there.”

Using an AI model called AlphaFold2, Williams and his co-authors predicted that the protein Sep15 forms a complex helical shape that looks something like a catcher’s mitt, and that this mitt perfectly matches a complementary site on the UGGT enzyme. The specific site where SEP15 and UGGT bind is also where UGGT reads the N-glycan code that tells it whether or not a protein is correctly folded.

“Basically,” said Hebert, “we’ve found the hotspot where all the action is taking place—and Sep15 is the key.”

To test their AlphaFold2-generated prediction, the research team designed an experiment using recombinant DNA re-engineering of UGGT to interrupt its binding to Sep15—and, indeed, the modified UGGT failed to form a complex with Sep15.

So what, exactly, is Sep15 doing? “There are two possibilities, both of which we’re following up on,” added Hebert. “Either Sep15 is giving the misfolded protein a chance at correcting its shape, or it is marking that protein for destruction.”

“The complexity of the proteins we are studying allows higher forms of life to function,” said Gierasch, “but the complexity of those proteins also means that they’re more prone to misfolding errors, and misfolding errors can have catastrophic consequences if the quality control process fails.”

Though there is still a great deal of basic research to be done, the team’s research sets the stage for novel drug therapies that target the Sep15/UGGT interface. “This is an untapped pharmaceutical area,” said Hebert, “and Williams’s research has moved us in the right direction for eventual treatment.”

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Related questions

01What Is Cystic Fibrosis?

Cystic fibrosis (CF) is a genetic disorder, which means you get it from your parents at birth. It affects your lungs, pancreas, and other organs. CF changes the way chloride (salt) moves through the cells of your body. This causes the mucus (which should be thin and slippery) in various organs to become thick and sticky. Over time, this thick mucus builds up inside your airways, making it hard to breathe. The mucus traps germs and leads to infections and inflammation. It can also cause severe, long-term damage to the lungs and lead to respiratory failure (inability to breathe normally) and death. In the pancreas, the thick mucus caused by CF prevents the release of digestive enzymes when you eat. This leads to malnutrition and poor growth. CF can also cause liver disease, reproductive problems, and cystic fibrosis-related diabetes (CFRD). More than 40,000 people in the U.S. live with CF. Doctors diagnose about 1,000 new cases each year. Today, more than half of the CF population is aged 18 or older, and new treatments have expanded the life expectancy by decades.

Source: www.webmd.com ↗
02What you can do

You might want to take a friend or family member with you to the appointment to help you remember information. Before your appointment, make a list of: Symptoms and when they started. Include anything that makes symptoms worse or better. All medicines, vitamins, herbs and supplements that you or your child take. Include the doses. Family history, such as whether anyone in your family has cystic fibrosis. Treatment you or your child have had for CF, if any. Include what the treatment was and if it helped. Any other medical conditions and their treatments. Questions to ask your healthcare professional. Questions to ask may include: What is likely causing these symptoms? What kinds of tests are needed? What treatment do you recommend? I or my child have other health conditions. How will cystic fibrosis affect them? Are there any limits needed? Feel free to ask other questions during your appointment.

Source: www.mayoclinic.org ↗
03When to see a doctor

If you or your child has symptoms of cystic fibrosis — or if someone in your family has CF — talk with your healthcare professional about testing for the condition. Make an appointment with a doctor who has skills and experience in treating CF. CF requires regular follow-up with your healthcare professional, at least every three months. Call your healthcare professional if you have new or worsening symptoms, such as more mucus than usual or a change in the mucus color, lack of energy, weight loss, or severe constipation. Get medical care right away if you're coughing up blood, have chest pain or trouble breathing, or have severe stomach pain and bloating. Call 911 or your local emergency number or go to the emergency department at a hospital if: You're having a hard time catching your breath or talking. Your lips or fingernails turn blue or gray. Others notice that you're not mentally alert.

Source: www.mayoclinic.org ↗
04How Does Alyftrek Work?

Alyftrek is a type of medicine called a CFTR modulator. Alyftrek is designed to help make the broken CFTR protein in people with cystic fibrosis work better. Since different genetic mutations can cause different types of problems with the protein, the medicines available today only work for people with certain mutations. Alyftrek is approved for people who have at least one F508del mutation or another responsive mutation in the CFTR gene. Alyftrek contains three active ingredients (vanzacaftor, tezacaftor, and deutivacaftor) that work together to help the CFTR protein work better. Vanzacaftor and tezacaftor help the CFTR protein fold correctly and move to the cell surface, while deutivacaftor increases CFTR activity to lower the buildup of mucus. By helping CFTR work better, Alyftrek helps thin mucus in the lungs and other organs, making it easier to clear and reducing complications of cystic fibrosis.

Source: www.webmd.com ↗
05What do the results mean?

Chloride in sweat is measured in mmol/L (millimoles of chloride per liter of sweat):

Source: medlineplus.gov ↗
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Research and Statistics: Who Has Cystic Fibrosis?

About 40,000 people are living with cystic fibrosis in the United States, and there are approximately 105,000 people with CF worldwide. (3) More than 75 percent of people with the disease are diagnosed by age 2, and more than half of all people living with cystic fibrosis are 18 or older. CF occurs predominantly in white populations, at a rate of 1 in 2,500 births. Between 2 and 5 percent of white people are carriers of the CFTR gene variant but have no overt clinical signs of disease. The disease is less common among African Americans, occurring at the much lower frequency of approximately 1 out of 17,000 births. (15) CF gene variants are most prevalent in persons of northern and central European ancestries or of Ashkenazi Jewish descent. They are rarely found in Native Americans, Asians, or native Africans. (16) CF is equally common among men and women, but women patients fare significantly worse than male patients with the disease. The median survival age for female CF patients is about three years younger than it is for men, but the reasons for the poorer survival rates among women are not completely understood. (17)

Source: everydayhealth.com ↗
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Peptide Therapy Guide Editorial Team

Editorial team for Peptide Therapy Guide.

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