Independent education resourceInformation here does not replace care from a qualified health professional.
Peptide Therapy GuideClear peptide education

Educational guide

Breakthrough protein offers new hope for pulmonary sarcoidosis treatment

Pulmonary sarcoidosis is a lung disease characterized by granulomas-tiny clumps of immune cells that form in response to inflammation. It's the most inflammatory of the interstitial lung diseases (ILDs), a family of conditions that all involve some level of in

Written by Peptide Therapy Guide Editorial Team
For education only

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

Pulmonary sarcoidosis is a lung disease characterized by granulomas-tiny clumps of immune cells that form in response to inflammation. It's the most inflammatory of the interstitial lung diseases (ILDs), a family of conditions that all involve some level of inflammation and fibrosis, or scarring, of the lungs. In the U.S., pulmonary sarcoidosis affects around 200,000 patients. The cause is unknown, and no new treatments have been introduced in the past 70 years.

In a paper published in Science Translational Medicine on March 12, 2025, scientists at Scripps Research and aTyr Pharma characterized a protein, HARSWHEP, that can soothe the inflammation associated with sarcoidosis by regulating white blood cells. Reducing inflammation slows the disease's progression and results in less scarring. A phase 1b/2a clinical trial of efzofitimod, a therapeutic form of HARSWHEP, showed promising results.

Taken together, these results validate a new way to approach immune regulation in chronic lung disease." Paul Schimmel, professor of molecular medicine and chemistry at Scripps Research and study's senior author

The drug's power lies in its gentle nature. "It's not a hammer; it's not overly suppressing the immune system. It's just nudging the immune system in a certain way," explains Leslie A. Nangle, Vice President of Research at aTyr Pharma and the paper's first author. "And if you can quiet the inflammation, you can stop the cycle of ongoing fibrosis."

HARSWHEP is part of an ancient class of proteins known as aminoacyl-tRNA synthetases (aaRSs). Typically, aaRSs play a key role in protein synthesis. "They're in every cell in your body. They're in every organism on the planet," Nangle says. Over time, new versions known as splice variants have emerged that bind to receptors on the outsides of cells and initiate different events throughout the body.

One such variant, HARSWHEP, entered the picture about 525 million years ago. Nangle and Schimmel screened more than 4,500 receptors and were surprised to find that HARSWHEP will bind only to the receptor neuropilin-2 (NRP2). This receptor is known for its role in development of the lymphatic system-the circulatory system through which immune cells travel-not immune function. But the researchers found that when small, circulating white blood cells known as monocytes enter a tissue in response to inflammation and develop into larger, more specialized white blood cells known as macrophages, those cells start to express high levels of NRP2.

"We had a protein with an unknown function. We had a receptor that was doing something on immune cells that had never been characterized. So we had a couple things we had to match up," Nangle says.

The team found that HARSWHEP binding to NRP2 physically transforms the macrophage. "It's creating a new type of macrophage that is less inflammatory and actually helps to resolve inflammation," Nangle explains.

To characterize HARSWHEP's mechanism of action, the team administered the protein in mice and rats and found that it reduced lung inflammation and the progression of fibrosis.

In separately published clinical trial data, the team saw a positive impact on patients who were treated with efzofitimod while tapering off of oral corticosteroids. Long-term steroid treatment, currently the first-line option, is associated with significant weight gain and organ damage, and the immunosuppressive effects leave patients vulnerable to infection.

The team also characterized patients' circulating immune cells before and after efzofitimod treatment. They saw that it reduced key indicators of the inflammation that drives sarcoidosis, such as the concentration of macrophages and other inflammatory immune cells.

While they're exploring sarcoidosis first, efzofitimod is a potential treatment for many interstitial lung diseases, Nangle explains. The aTyr team plans to explore treating other ILDs and is running a clinical trial now for scleroderma-related ILD.

The work highlights macrophages as a possible target for treating ILDs, and the promise of HARSWHEP could foretell other aaRSs' therapeutic potential.

Nangle describes this work as moving "from concept to clinic." Schimmel has worked on aaRSs throughout his tenure at Scripps Research. aTyr Pharma spun out of Schimmel's lab; his former graduate student Nangle was the company's first employee upon opening their labs in 2006.

"Original work that happened at Scripps gave rise to the idea that this could be a new class of therapeutic molecules, Nangle says. "We have now moved it all the way to clinical development. It's a proof of concept for this whole class of molecules and the work Paul has done."

Nangle, L. A., et al. (2025). A human histidyl-tRNA synthetase splice variant therapeutic targets NRP2 to resolve lung inflammation and fibrosis. Science Translational Medicine. doi.org/10.1126/scitranslmed.adp4754.

Connected reading

Helpful context for this guide

Source-derived material selected through this article’s indexed topics.

Related questions

01What Is Sarcoidosis?

Sarcoidosis is an inflammatory disease that can affect multiple organs in the body, but it most often involves the lungs and lymph glands in the chest. If you have sarcoidosis, red, swollen lumps called granulomas form in your affected organs. Symptoms, which can range from nonexistent to severe, depend partly on where the lumps form. Is sarcoidosis an autoimmune disease? Sarcoidosis does involve immune system activity, but it's not generally considered an autoimmune disease. Autoimmunity means your immune system attacks parts of your body. But researchers are continuing to study the idea that at least some cases of sarcoidosis involve autoimmunity. Is sarcoidosis cancer? Sarcoidosis is not cancer. In rare cases, doctors might mistake cancer for sarcoidosis, delaying proper diagnosis of the cancer.

Source: www.webmd.com ↗
02Could you discuss any ongoing or future research projects that you are particularly excited about in the field of axon biology and sncRNAs?

Certainly. We're keenly exploring extracellular vesicles as mediums for cells to communicate. These cell made vesicles often carry microRNAs and other non-coding RNAs, presenting a unique avenue to understand how neurons modulate their environment, which is especially interesting in neurological conditions. We are exploring extracellular vesicles as these tools with which cells can communicate and transfer gene expression patterns. And we're looking at, for example, how early life brain tumours such as medulloblastoma can impact neuron development and activity and how this can affect later life pain processing and neurological conditions. This has been possible via funding from the Medical Research Foundation, which supported a big collaboration between the labs of Gareth Hathway, Beth Coyle, Vicky James, Anna Grabowska and myself in Nottingham.

Source: www.news-medical.net ↗
03What’s your vision for BenevolentBio?

I want us to disrupt the drug discovery and development process and to look at each place on the drug discovery and development pipeline, so that we can be much better at getting the right target, much quicker at getting the right compound and much more confident that those compounds have the right characteristics which mean they will be safe and well tolerated. Then we can go to the right patient population with the right dose, so we would have a much leaner, more successful process and be able to demonstrate the value of our AI technology.

Source: www.news-medical.net ↗
04What proteins does the body tolerate?

The study began with a bowl of mouse chow. Rather than start piecewise, one food after another, the researchers screened regulatory T cells from mice given a normal diet. They looked for what the regulatory T cells were attaching to, then mapped them backward to specific parts of the chow. They found three proteins-more specifically, they found small, specific bits of those proteins called epitopes-that the regulatory T cells recognized. The epitopes were found in three different food proteins: one from corn, one from wheat, and one from soybean. Notably, all three epitopes are from seed proteins, suggesting that these highly abundant plant proteins are commonly recognized by the immune system's tolerance mechanisms. Furthermore, the most abundant T cells were those reactive to the corn epitope, which makes sense given that corn is not a common allergy. Soy, on the other hand, is one of the major allergies in humans, so the identification of a soybean epitope is especially exciting, notes Blum. Additionally, the mammalian receptor that interacts with the identified soybean epitope also interacts with sesame, helping explain cross-tolerance, or when a tolerance to one food infers a tolerance to another. With the new epitopes identified, the researchers had a few follow-up questions, like where do these regulatory T cells live? And how do they perform in an inflamed versus a healthy environment? They used mice and cell culture models to answer these questions, finding that the regulatory T cells are primarily located in the gut and their activities vary based on whether they are in an inflamed or healthy environment, either working to reduce inflammation or sustain an absence of inflammation.

Source: www.news-medical.net ↗
05Please can you give an introduction to Critical Outcome Technologies’ lead cancer drug candidate COTI-2?

COTI-2 is a computer-designed small molecule that was discovered by our artificial intelligence drug discovery platform called CHEMSAS. The molecule has undergone extensive preclinical evaluation at multiple centres in Canada, Europe and the USA. It has been well tolerated in preclinical testing and very effective against human tumours with p53 mutations and/or mutations in the PI3K/AKT pathway. We have positive results from more than 10 different human tumour xenograft models using COTI-2 alone or in combination with conventional therapy. COTI-2 is now in late preclinical development being prepared for a Phase 1 study and should be ready for clinical development by the end of this year.

Source: www.news-medical.net ↗
P

About the author

Peptide Therapy Guide Editorial Team

Editorial team for Peptide Therapy Guide.

View all articles →