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101.
McManus JJ Lomakin A Ogun O Pande A Basan M Pande J Benedek GB 《Proceedings of the National Academy of Sciences of the United States of America》2007,104(43):16856-16861
The P23T mutant of human gammaD-crystallin (HGD) is associated with cataract. We have previously investigated the solution properties of this mutant, as well as those of the closely related P23V and P23S mutants, and shown that although mutations at site 23 of HGD do not produce a significant structural change in the protein, they nevertheless profoundly alter the solubility of the protein. Remarkably, the solubility of the mutants decreases with increasing temperature, in sharp contrast to the behavior of the native protein. This inverted solubility corresponds to a strong increase in the binding energy with temperature. Here we have investigated the liquid-liquid coexistence curve and the diffusivity of the P23V mutant and find that these solution properties are unaffected by the mutation. This means that the chemical potentials in the solution phase are essentially unaltered. The apparent discrepancy between the interaction energies in the solution phase, as compared with the solid phase, is explicable in terms of highly anisotropic interprotein interactions, which are averaged out in the solution phase but are fully engaged in the solid phase. 相似文献
102.
All males in two generations of a Hungarian family died of interstitial pneumonia. History and records suggested X-linked hyper-IgM syndrome (X-HIGM). DNA sequencing of a female carrier revealed a c. 654C->A transversion of the CD40L gene that predicts premature termination of CD40L synthesis. This report points to the importance of early carrier detection and genetic counseling in families with X-linked primary immunodeficiency diseases. We propose that the c.654C->A sequence variant may associate with severe X-HIGM phenotype. 相似文献
103.
Zalán Péterfi ágnes Donkó Anna Orient Adrienn Sum ágnes Prókai Beáta Molnár Zoltán Veréb éva Rajnav?lgyi Krisztina J. Kovács Veronika Müller Attila J. Szabó Miklós Geiszt 《The American journal of pathology》2009,175(2):725-735
Mammalian peroxidases are heme-containing enzymes that serve diverse biological roles, such as host defense and hormone biosynthesis. A mammalian homolog of Drosophila peroxidasin belongs to the peroxidase family; however, its function is currently unknown. In this study, we show that peroxidasin is present in the endoplasmic reticulum of human primary pulmonary and dermal fibroblasts, and the expression of this protein is increased during transforming growth factor-β1-induced myofibroblast differentiation. Myofibroblasts secrete peroxidasin into the extracellular space where it becomes organized into a fibril-like network and colocalizes with fibronectin, thus helping to form the extracellular matrix. We also demonstrate that peroxidasin expression is increased in a murine model of kidney fibrosis and that peroxidasin localizes to the peritubular space in fibrotic kidneys. In addition, we show that this novel pathway of extracellular matrix formation is unlikely mediated by the peroxidase activity of the protein. Our data indicate that peroxidasin secretion represents a previously unknown pathway in extracellular matrix formation with a potentially important role in the physiological and pathological fibrogenic response.Peroxidases are heme-containing enzymes with highly conserved structure, serving diverse functions in the plant and animal kingdom.1 Peroxidases catalyze the oxidation of various substrates in the presence of H2O2. Mammalian peroxidases have an important role in several physiological processes including host defense and hormone biosynthesis. The family of mammalian peroxidases consists of myeloperoxidase, eosinophil peroxidase, lactoperoxidase, thyroid peroxidase, and the mammalian peroxidasin. Myeloperoxidase, eosinophil peroxidase, and lactoperoxidase have antimicrobial activity and serve in the first line of host defense, while thyroid peroxidase has an essential role in the biosynthesis of thyroid hormones.2,3,4 The function of the mammalian peroxidasin is currently unknown. Peroxidases in plants and in lower animal species frequently participate in extracellular matrix (ECM) formation. In the presence of H2O2, peroxidases enzymatically cross-link extracellular proteins through tyrosine residues.5 ECM stabilization by dityrosine bridges is well-documented during sea urchin fertilization, where secreted ovoperoxidase is responsible for the formation of cross-links.6 Dityrosine formation is also involved in the stabilization of C. elegans cuticle, where dual oxidases, carrying both NADPH oxidase and peroxidase-like domains, provide hydrogen peroxide for the crosslinking reaction.7Peroxidasin (PXDN), a unique form of peroxidase was first identified in Drosophila melanogaster.8 Beside containing a peroxidase domain, which is highly homologous to other animal peroxidases, peroxidasin also contains protein domains characteristic for proteins of the ECM. Drosophila PXDN was found to be expressed in several stages of development, but the exact function remained unknown.8 Little is still known about the mammalian PXDN protein. A human homolog of Drosophila PXDN was originally identified as a p53-responsive gene product from a colon cancer cell line, but it was not characterized in detail.9 An independent cloning effort, using subtractive hybridization also led to the identification of the mammalian PXDN gene, which was originally named melanoma gene 50, based on the expression in melanoma samples.10 This latter study has characterized PXDN as a possible potent melanoma-associated antigen, but it did not examine the possible physiological role of the protein.Here we demonstrate that peroxidasin is expressed by human primary cells, including fibroblasts of different origin, where the protein is localized to the endoplasmic reticulum. On stimulation by transforming growth factor (TGF)-β1, differentiating myofibroblasts show increased expression of peroxidasin. The protein becomes secreted to the extracellular space where it is organized into a fibril-like network. We also show that this pathway of ECM formation is probably not mediated by the peroxidase activity of the protein. Our results suggest that beside the secretion of well-known constituents of the ECM, PXDN secretion by myofibroblasts is a novel way of ECM modification in wound repair and tissue fibrosis. 相似文献
104.
105.
Grumelli C Berghuis P Pozzi D Caleo M Antonucci F Bonanno G Carmignoto G Dobszay MB Harkany T Matteoli M Verderio C 《Molecular and cellular neurosciences》2008,39(3):314-323
Calpains are a family of calcium-dependent proteases with abundant expression in the CNS, and potent in cleaving some synaptic components. Assessment of calpain activity by its fluorescent substrate, Boc-Leu-Met-CMAC, revealed that cultured neurons display a significant level of constitutive enzyme activity. Notably, calpain activity differs in distinct neuronal populations, with a significantly higher level of activity in GABAergic cells. Using selectively-enriched cultures of fast-spiking GABAergic interneurons, we show that calpain activity partially contributes to the post-translational down regulation of SNAP-25, a calpain substrate, in differentiated GABA cells. In addition, we demonstrate that SNAP-25 is cleaved by calpain in response to acute seizures induced by intraperitoneal kainate injection in vivo. These data indicate that calpains in neurons are active even at physiological calcium concentrations and that different levels of calpain activation in selected neuron subtypes may contribute to the pattern of synaptic protein expression. 相似文献
106.
107.
Atlasz T Szabadfi K Kiss P Babai N Koszegi Z Tamas A Reglodi D Gabriel R 《Journal of molecular neuroscience : MN》2008,36(1-3):97-104
Pituitary adenylate cyclase-activating polypeptide (PACAP) is neuroprotective in animal models of different brain pathologies and injuries, including cerebral ischemia, Parkinson's disease, and different types of retinal degenerations. We have previously shown that PACAP is protective against monosodium glutamate (MSG)-induced retinal degeneration, where PACAP-treated retinas has more retained structure and PACAP induces anti-apoptotic while it inhibits pro-apoptotic signaling pathways. The aim of the present study was to investigate cell-type specific effects of PACAP in MSG-induced retinal degeneration by means of immunohistochemistry. Rat pups received MSG (2 mg/g b.w.) applied on postnatal days 1, 5, and 9. PACAP (100 pmol in 5 microl saline) was injected into the right vitreous body, while the left eye received only saline. Retinas were processed for immunocytochemistry after 3 weeks. Immunolabeling was determined for vesicular glutamate transporter 1, tyrosine hydroxylase, calretinin, calbindin, parvalbumin, and vesicular gamma-aminobutyric acid (GABA) transporter. In the MSG-treated retinas, the cell bodies and processes in the inner nuclear, inner plexiform, and ganglion cell layers displayed less immunoreactivity for all antisera. Apart from photoreceptors, only one major retinal cell type examined in this study; the calbindin-immunoreactive horizontal cell seemed not to be affected by MSG application. After simultaneous application of MSG and PACAP, staining of retinas was similar to that of normal eyes, with no significant alterations in immunoreactive patterns. These findings further support the neuroprotective function of PACAP in MSG-induced retinal degeneration. 相似文献
108.
Pesti Adrián Danics Krisztina Glasz Tibor Várkonyi Tibor Barbai Tamás Reszegi Andrea Kovalszky Ilona Vályi-Nagy István Dobi Deján Lotz Gábor Schaff Zsuzsa Kiss András 《Age (Dordrecht, Netherlands)》2023,45(2):1015-1031
GeroScience - The most severe alterations in Coronavirus disease 2019 (COVID-19) caused by the severe acute respiratory syndrome Coronavirus-2 (SARS-CoV-2) infection are seen in the lung. However,... 相似文献
109.
110.
Balazs Antus Imre Barta Krisztina Czebe Ildiko Horvath Eszter Csiszer 《Inflammation research》2010,59(1):83-86