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Systematic Design of Trypsin Cleavage Site Mutated Exendin4-Cysteine 1, an Orally Bioavailable Glucagon-Like Peptide-1 Receptor Agonist.

Int J Mol Sci · 2017

Last updated 2026-05-28

Researchers designed a modified version of the GLP-1 drug exendin-4, called TSME-1, to make it resistant to digestion in the gut so it could be taken as a pill instead of an injection. In tests on mice, TSME-1 taken by mouth lowered blood sugar levels and lasted longer in the body compared to the original exendin-4. The study found TSME-1 was nearly 100% resistant to breakdown by an enzyme called trypsin.

AI summary of the abstract below.

JournalInt J Mol Sci, 2017
Citations6
Relative citation ratio0.25
NIH percentile16
Molecules
Conditions studied Type 2 Diabetes, Obesity

Abstract

Exendin-4 is a strong therapeutic candidate for the treatment of metabolic syndrome. Related receptor agonist drugs have been on the market since 2005. However, technical limitations and the pain caused by subcutaneous injection have severely limited patient compliance. The goal of the study is to investigate a biologically active exendin-4 analog could be administered orally. Using intraperitoneal glucose tolerance tests, we discovered that exendin4-cysteine administered by oral gavage had a distinct hypoglycemic effect in C57BL/6J mice. Using Rosetta Design and Amber, we designed and screened a series of exendin4-cysteine analogs to identify those that retained biological activity while resisting trypsin digestion. Trypsin Cleavage Site Mutated Exendin4-cysteine 1 (TSME-1), an analog whose bioactivity was similar to exendin-4 and was almost completely resistant to trypsin, was screened out. In addition, TSME-1 significantly normalized the blood glucose levels and the availability of TSME-1 was significantly higher than that of exendin-4 and exendin4-cysteine. Collectively orally administered TSME-1, a trypsin-resistant exendin-4 analog obtained by the system, is a strong candidate for future treatments of type 2 diabetes.

Verbatim abstract via PubMed 28282854 ↗