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Biology subjects

Lieberwirth, I.

Publications and source records attributed to Lieberwirth, I..

3 recordsLinked to original sources

Functional Mapping and Engineering of the Sec Translocon Unlocked by a Cell-Free System

Almost all proteins are inserted or translocated across membranes by the universally conserved Sec translocon. Despite its central role, experimental access to Sec function has remained limited. Here, we present a cell-free protein synthesis platform that inserts SecYEG into synthetic vesicles, enabling direct testing of Sec in real-time and high-throughput, circumventing longstanding viability constraints. Screening 300 Sec variants in a single experiment, we consolidate three decades of Sec research, while vastly expanding mutant diversity for structure-function insights. Mapping over 30 functionally critical regions that modulate Sec activity across three orders of magnitude, we uncover dozens of super-active variants. We further leverage our system to increase membrane protein quality and nanobody export, highlighting the potential of our system for advancing applications in synthetic biology and biotechnology.

molecular biology↗

Loss of ciliary proteins IFT20 and IFT88 results in defective phagocytosis and metabolism in the RPE

A major proportion of retinal disease-causing genes are related to the primary cilium, a microtubule-based signalling organelle essential for multiple developmental pathways. Previous work has shown that the primary cilium plays a crucial role in the development of the retinal pigment epithelium (RPE) affecting homeostasis and function, in particular phagocytosis. We used a cell biology approach to analyse the influence of ciliary genes on RPE phagocytosis and dissect the underlying molecular mechanisms. We found that loss of ciliary trafficking via depletion of Ift20 and Ift88 in RPE-J cells resulted in impaired phagocytosis, specifically by reducing photoreceptor outer segments binding, changes in apical membrane morphology and altered mitochondrial metabolism, whereas loss of Bbs6 showed no functionality phenotype. In addition, proteomics revealed mis-regulated pathways and targets, through which new phagocytosis-related proteins were identified. Our data highlight the role of primary cilia proteins in RPE function and metabolism, essential for visual health.

cell biology↗

Structural basis of neurofibromin tetramerization and dimer-tetramer equilibrium

Human neurofibromin (NF1) is a tumor suppressor multidomain protein known to regulate cellular functions as a dimer. Using cryo-EM, we discovered that neurofibromin can form more highly organized structures and describe tetramerization and a dynamic dimer-to-tetramer equilibrium with extensive interlocked interfaces as well as structural flexibility. The new tetramer structure generates and modifies interaction surfaces and controls protein functions such as microtubule recruitment, thereby providing novel insights into cellular functions.

molecular biology↗