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Kühnen, P.

Publications and source records attributed to Kühnen, P..

2 recordsLinked to original sources

A missense KCNQ1 Mutation Impairs Insulin Secretion in Neonatal Diabetes

KCNQ1/Kv7 is a voltage-gated K+ channel that regulates heart rhythm, glucose and salt homeostasis. Mutations of KCNQ1 are primarily associated with long-QT syndrome and type 2 diabetes; however, thus far KCNQ1 mutations have not been associated with monogenetic diabetes. Here, we identified a homozygous KCNQ1 missense mutation (R397W) in an individual with permanent neonatal diabetes (PND). To identify the mechanisms that link the mutation to the disease, we introduced the mutation into human embryonic stem cells (hESCs), and used them to derived pancreatic {beta}-like cells (hESC-{beta} cell). In early {beta}-like cells, we observed atypical membrane electrical activity, increased levels of cytoplasmic Ca2+, and a hypersecretion of insulin. Upon extended culture, their insulin secretion decreased and the number of apoptotic cells increased, resulting in a reduction in the numbers of {beta}-like cells. Late-stage {beta}-like cells exhibited a decrease in the expression of metabolic genes, e.g. HNF4, PDX1 and GLUT1, providing a possible mechanism for {beta}-cell dysfunction. Our study identifies KCNQ1 as a novel candidate gene of monogenetic diabetes and shows that KCNQ1 regulates {beta}-cell function and survival.

cell biology↗

Structures of active melanocortin-4 receptor--Gs-protein complexes with NDP-α-MSH and setmelanotide

The melanocortin-4 receptor (MC4R), a hypothalamic master regulator of energy homeostasis and appetite, is a G-protein coupled receptor and a prime target for the treatment of obesity. Here, we present cryo-electron microscopy structures of MC4R- Gs-protein complexes with two recently FDA-approved drugs, the peptide agonists NDP--MSH and setmelanotide, with 2.9 [A] and 2.6 [A] resolution. Together with signaling data, the complex structures reveal the agonist-induced origin of transmembrane helix (TM) 6 regulated receptor activation. In both structures, different ligand binding modes of NDP--MSH, a high-affinity variant of the endogenous agonist, and setmelanotide, an anti-obesity drug with biased signaling, underline the key role of TM3 for ligand-specific interactions and of calcium ion as a ligand-adaptable cofactor. The agonist-TM3 interplay subsequently impacts the receptor- Gs-protein interfaces, mainly at intracellular loop 2. These structures reveal mechanistic details of MC4R activation or inhibition and provide important insights into receptor selectivity that will facilitate the development of tailored anti-obesity drugs.

biochemistry↗