Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Life Sciences (4)
- Nervous System (3)
- Analytical, Diagnostic and Therapeutic Techniques and Equipment (2)
- Biochemistry, Biophysics, and Structural Biology (2)
- Cell Biology (2)
-
- Cell and Developmental Biology (2)
- Investigative Techniques (2)
- Medical Neurobiology (2)
- Medical Sciences (2)
- Medical Specialties (2)
- Neurology (2)
- Amino Acids, Peptides, and Proteins (1)
- Animal Experimentation and Research (1)
- Biochemistry (1)
- Chemicals and Drugs (1)
- Diagnosis (1)
- Disease Modeling (1)
- Diseases (1)
- Genetics (1)
- Genetics and Genomics (1)
- Molecular and Cellular Neuroscience (1)
- Neuroscience and Neurobiology (1)
- Neurosciences (1)
- Other Biochemistry, Biophysics, and Structural Biology (1)
- Research Methods in Life Sciences (1)
- Therapeutics (1)
- Tissues (1)
- Keyword
-
- Adnectin (1)
- Anionic plasma (1)
- Anionic protein (1)
- Arginine methyl (1)
- Auditory brainstem (1)
-
- Axons (1)
- Consensus design (1)
- Cytoplasm (1)
- Fibronectin (1)
- Hif1a (1)
- Hypoxia (1)
- Loop grafting (1)
- Microglia (1)
- Microrheology (1)
- Mini proteins (1)
- Monobodies (1)
- Myelination (1)
- Nanofibers (1)
- Non-antibody scaffold (1)
- Peripheral nerves (1)
- Polyelectrolyte complex micelles (1)
- Prebiotic life (1)
- Protein-based therapeutics (1)
- Schwann cells (1)
- Stability–function trade-off (1)
- Subcellular organization (1)
- Vegf (1)
Articles 1 - 6 of 6
Full-Text Articles in Cells
Actl6a Coordinates Axonal Caliber Recognition And Myelination In The Peripheral Nerve, Hye-Jin Park, Eric Tsai, Dennis Huang, Michael Weaver, Luciana Frick, Ace Alcantara, John J. Moran, Julia Patzig, Carmen V. Melendez-Vasquez, Gerald R. Crabtree, M.L. Feltri, John Svaren, Patricia Casaccia
Actl6a Coordinates Axonal Caliber Recognition And Myelination In The Peripheral Nerve, Hye-Jin Park, Eric Tsai, Dennis Huang, Michael Weaver, Luciana Frick, Ace Alcantara, John J. Moran, Julia Patzig, Carmen V. Melendez-Vasquez, Gerald R. Crabtree, M.L. Feltri, John Svaren, Patricia Casaccia
Advanced Science Research Center
Cells elaborate transcriptional programs in response to external signals. In the peripheral nerves, Schwann cells (SC) sort axons of given caliber and start the process of wrapping their membrane around them. We identify Actin-like protein 6a (ACTL6a), part of SWI/SNF chromatin remodeling complex, as critical for the integration of axonal caliber recognition with the transcriptional program of myelination. Nuclear levels of ACTL6A in SC are increased by contact with large caliber axons or nanofibers, and result in the eviction of repressive histone marks to facilitate myelination. Without Actl6a the SC are unable to coordinate caliber recognition and myelin production. Peripheral …
Prmt5 Interacting Partners And Substrates In Oligodendrocyte Lineage Cells, David K. Dansu, Jialiang Liang, Ipek Selcen, Haiyan Zheng, Dirk F. Moore, Patricia Casaccia
Prmt5 Interacting Partners And Substrates In Oligodendrocyte Lineage Cells, David K. Dansu, Jialiang Liang, Ipek Selcen, Haiyan Zheng, Dirk F. Moore, Patricia Casaccia
Advanced Science Research Center
The protein arginine methyl transferase PRMT5 is an enzyme expressed in oligodendrocyte lineage cells and responsible for the symmetric methylation of arginine residues on histone tails. Previous work from our laboratory identified PRMT5 as critical for myelination, due to its transcriptional regulation of genes involved in survival and early stages of differentiation. However, besides its nuclear localization, PRMT5 is found at high levels in the cytoplasm of several cell types, including oligodendrocyte progenitor cells (OPCs) and yet, its interacting partners in this lineage, remain elusive. By using mass spectrometry on protein eluates from extracts generated from primary oligodendrocyte lineage cells …
Protein Charge Parameters That Influence Stability And Cellular Internalization Of Polyelectrolyte Complex Micelles, Rachel A. Kapelner, Rachel S. Fisher, Shana Elbaum-Garfinkle, Allie C. Obermeyer
Protein Charge Parameters That Influence Stability And Cellular Internalization Of Polyelectrolyte Complex Micelles, Rachel A. Kapelner, Rachel S. Fisher, Shana Elbaum-Garfinkle, Allie C. Obermeyer
Advanced Science Research Center
Proteins are an important class of biologics, but there are several recurring challenges to address when designing protein-based therapeutics. These challenges include: the propensity of proteins to aggregate during formulation, relatively low loading in traditional hydrophobic delivery vehicles, and inefficient cellular uptake. This last criterion is particularly challenging for anionic proteins as they cannot cross the anionic plasma membrane. Here we investigated the complex coacervation of anionic proteins with a block copolymer of opposite charge to form polyelectrolyte complex (PEC) micelles for use as a protein delivery vehicle. Using genetically modified variants of the model protein green fluorescent protein (GFP), …
Mutational And Biophysical Robustness In A Prestabilized Monobody, Peter G. Chandler, Li Lynn Tan, Benjamin T. Porebski, James S. Green, Blake T. Riley, Sebastian S. Broendum, David E. Hoke, Robert J. Falconer, Trent P. Munro, Malcolm Buckle, Colin J. Jackson, Ashley M. Buckle
Mutational And Biophysical Robustness In A Prestabilized Monobody, Peter G. Chandler, Li Lynn Tan, Benjamin T. Porebski, James S. Green, Blake T. Riley, Sebastian S. Broendum, David E. Hoke, Robert J. Falconer, Trent P. Munro, Malcolm Buckle, Colin J. Jackson, Ashley M. Buckle
Advanced Science Research Center
The fibronectin type III (FN3) monobody domain is a promising non-antibody scaffold, which features a less complex architecture than an antibody while maintaining analogous binding loops. We previously developed FN3Con, a hyperstable monobody derivative with diagnostic and therapeutic potential. Prestabilization of the scaffold mitigates the stability–function trade-off commonly associated with evolving a protein domain toward biological activity. Here, we aimed to examine if the FN3Con monobody could take on antibody-like binding to therapeutic targets, while retaining its extreme stability. We targeted the first of the Adnectin derivative of monobodies to reach clinical trials, which was engineered by directed evolution for …
Distinct Cellular Profiles Of Hif1a And Vegf Mrna Localization In Microglia, Astrocytes And Neurons During A Period Of Vascular Maturation In The Auditory Brainstem Of Neonate Rats, Daphne Chang, Quetanya Brown, Grace Tsui, Ye He, Jia Liu, Lingyan Shi, Adrián Rodríguez-Contreras
Distinct Cellular Profiles Of Hif1a And Vegf Mrna Localization In Microglia, Astrocytes And Neurons During A Period Of Vascular Maturation In The Auditory Brainstem Of Neonate Rats, Daphne Chang, Quetanya Brown, Grace Tsui, Ye He, Jia Liu, Lingyan Shi, Adrián Rodríguez-Contreras
Advanced Science Research Center
Defining the relationship between vascular development and the expression of hypoxia-inducible factors (Hifs) and vascular endothelial growth factor (Vegf) in the auditory brainstem is important to understand how tissue hypoxia caused by oxygen shortage contributes to sensory deficits in neonates. In this study, we used histology, molecular labeling, confocal microscopy and 3D image processing methods to test the hypothesis that significant maturation of the vascular bed in the medial nucleus of the trapezoid body (MNTB) occurs during the postnatal period that precedes hearing onset. Isolectin-B4 histochemistry experiments suggested that the MNTB vasculature becomes more elaborate between …
Tunable Multiphase Dynamics Of Arginine And Lysine Liquid Condensates, Rachel S. Fisher, Shana Elbaum-Garfinkle
Tunable Multiphase Dynamics Of Arginine And Lysine Liquid Condensates, Rachel S. Fisher, Shana Elbaum-Garfinkle
Advanced Science Research Center
Liquid phase separation into two or more coexisting phases has emerged as a new paradigm for understanding subcellular organization, prebiotic life, and the origins of disease. The design principles underlying biomolecular phase separation have the potential to drive the development of novel liquid-based organelles and therapeutics, however, an understanding of how individual molecules contribute to emergent material properties, and approaches to directly manipulate phase dynamics are lacking. Here, using microrheology, we demonstrate that droplets of poly-arginine coassembled with mono/polynucleotides have approximately 100 fold greater viscosity than comparable lysine droplets, both of which can be finer tuned by polymer length. We …