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991.
Xu Peng Qiong Lin Yang Liu Yixin Jin Joseph E. Druso Marc A. Antonyak Jun-Lin Guan Richard A. Cerione 《蛋白质与细胞》2013,4(3):231
The establishment of a polarized cellular morphology is essential for a variety of processes including neural tube morphogenesis and the development of the brain. Cdc42 is a Ras-related GTPase that plays an essential role in controlling cell polarity through the regulation of the actin and microtubule cytoskeleton architecture. Previous studies have shown that Cdc42 plays an indispensable role in telencephalon development in earlier embryo developmental stage (before E12.5). However, the functions of Cdc42 in other parts of brain in later embryo developmental stage or in adult brain remain unclear. Thus, in order to address the role of Cdc42 in the whole brain in later embryo developmental stage or in adulthood, we used Cre/loxP technology to generate two lines of tissuespecific Cdc42-knock-out mice. Inactivation of Cdc42 was achieved in neuroepithelial cells by crossing Cdc42/ flox mice with Nestin- Cre mice and resulted in hydrocephalus, causing death to occur within the postnatal stage. Histological analyses of the brains from these mice showed that ependymal cell differentiation was disrupted, resulting in aqueductal stenosis. Deletion of Cdc42 in the cerebral cortex also induced obvious defects in interkinetic nuclear migration and hypoplasia. To further explore the role of Cdc42 in adult mice brain, we examined the effects of knocking-out Cdc42 in radial glial cells by crossing Cdc42/fl ox mice with human glial fi brillary acidic protein (GFAP)-Cre mice. Inactivation of Cdc42 in radial glial cells resulted in hydrocephalus and ependymal cell denudation. Taken together, these results highlight the importance of Cdc42 for ependymal cell differentiation and maintaining, and suggest that these functions likely contribute to the essential roles played by Cdc42 in the development of the brain. 相似文献
992.
993.
Sunaina Zutshi Meenakshi Choudhary Naveen Bharat Malik Zainul Abdin Tasneem Fatma 《Journal of phycology》2008,44(4):889-896
Lead (Pb) is a heavy metal and a potentially hazardous environmental pollutant. In this study, the potential of lead to induce oxidative stress in biological systems was assessed using the cyanobacterium Hapalosiphon fontinalis‐339 as model test organism. The impact of lead toxicity on the cellular antioxidant system and the biochemical modulations that result in generation of antioxidant defense responses were also studied. To determine the effect of Pb toxicity, the test organism was grown in the presence of various concentrations (0.05, 0.10, 0.20, 0.40, 0.80, 1.0, 1.20, and 1.25 mg · L?1) of exogenous lead chloride (PbCl2), and its effects on growth were observed in terms of the change in chl content. There was a significant increase in metal uptake by the alga with a concomitant decrease in growth. Lead stress appeared to significantly up‐regulate the levels of stress‐related antioxidant enzymes—such as superoxide dismutase (SOD), ascorbate peroxidase (APX), and glutathione reductase (GR)—while a decrease in catalase (CAT) levels was observed. In addition, the levels of nonenzymatic antioxidants, oxidized and total glutathione, were changed. Our results suggest the existence of a potent antioxidant defense machinery in H. fontinalis‐339 and this organism can be employed to monitor lead toxicity in the environment. 相似文献
994.
Li G Zhao G Schindelin H Lennarz WJ 《Biochemical and biophysical research communications》2008,375(2):247-251
In eukaryotic cells, the endoplasmic reticulum-associated degradation (ERAD) pathway is essential for the disposal of misfolded proteins. Recently, we demonstrated the existence of a higher order complex consisting of the ER bound E3 ligase gp78, p97, PNGase, and HR23B in mammals. This complex may serve to facilitate the routing of misfolded glycoproteins out of the ER to the cytosol where they are degraded by the proteasome. In this complex, p97 functions as an organizer to mediate the interactions with gp78 and the deglycosylating enzyme PNGase. A novel protein-binding motif of mouse p97 was identified that consists of its last 10 amino acid residues; this motif is sufficient to mediate the interaction of p97 with PNGase and Ufd3. Phosphorylation of p97’s highly conserved penultimate tyrosine residue, completely blocks binding of both PNGase and Ufd3 to mp97. We have found that c-Src kinase directly and selectively phosphorylated the penultimate tyrosine of p97 in vitro, and that overexpression of c-Src significantly increased the phosphorylation level of p97 in cells and caused accumulation of the ERAD substrate TCRα-GFP, as well as ubiquitin-conjugated substrates. These results suggest a role for p97 phosphorylation in the degradation of misfolded glycoproteins. 相似文献
995.
Decaens C Durand M Grosse B Cassio D 《Biology of the cell / under the auspices of the European Cell Biology Organization》2008,100(7):387-398
The correct functioning of the liver is ensured by the setting and the maintenance of hepatocyte polarity. The complex polarity of the hepatocyte is characterized by the existence of several basolateral and apical poles per cell. Many in vitro models are available for studying hepatocyte polarity, but which are the more suitable? To answer this question, we aimed to identify criteria which determine the typical hepatocyte polarity. Therefore, we compiled a range of protein markers of membrane domains in rat hepatocytes and investigated their involvement in hepatocytic functions. Then, we focused on the relationship between hepatic functions and the cytoskeleton, Golgi apparatus and endoplasmic reticulum. Subsequently, we compared different cell lines expressing hepatocyte polarity. Finally, to demonstrate the usefulness of some of these lines, we presented new data on endoplasmic reticulum organization in relation to polarity. 相似文献
996.
997.
A. A. Rodimov 《Russian Journal of Developmental Biology》2005,36(5):298-303
A brief review dedicated to the relationship between the egg animal-vegetal axis and polarity of future larva in Cnidaria. Possible variants of changes in polarity of the embryo during development are discussed. 相似文献
998.
Bianchi C Torsello B Angeloni V Bombelli S Soldi M Invernizzi L Brambilla P Perego RA 《Journal of cellular biochemistry》2008,105(5):1219-1227
999.
Extracellular matrix control of mammary gland morphogenesis and tumorigenesis: insights from imaging
The extracellular matrix (ECM), once thought to solely provide physical support to a tissue, is a key component of a cell’s
microenvironment responsible for directing cell fate and maintaining tissue specificity. It stands to reason, then, that changes
in the ECM itself or in how signals from the ECM are presented to or interpreted by cells can disrupt tissue organization;
the latter is a necessary step for malignant progression. In this review, we elaborate on this concept using the mammary gland
as an example. We describe how the ECM directs mammary gland formation and function, and discuss how a cell’s inability to
interpret these signals—whether as a result of genetic insults or physicochemical alterations in the ECM—disorganizes the
gland and promotes malignancy. By restoring context and forcing cells to properly interpret these native signals, aberrant
behavior can be quelled and organization re-established. Traditional imaging approaches have been a key complement to the
standard biochemical, molecular, and cell biology approaches used in these studies. Utilizing imaging modalities with enhanced
spatial resolution in live tissues may uncover additional means by which the ECM regulates tissue structure, on different
length scales, through its pericellular organization (short-scale) and by biasing morphogenic and morphostatic gradients (long-scale).
Electronic supplementary material The online version of this article (doi:) contains supplementary material, which is available to authorized users. 相似文献
1000.
Zhou Y Fang L Du D Zhou W Feng X Chen J Zhang Z Chen Z 《Acta biochimica et biophysica Sinica》2008,40(8):729-739
The evolutionarily conserved cell polarity protein Par3, a scaffold-like PDZreontaining protein, plays a critical role in the establishment and maintenance of epithelial cell polarity. Although the role of Par3 in establishing cell polarity in epithelial cells has been intensively explored, the function of Par3 in hematopoietic cells remains elusive. To address this issue, we generated GST-fusion proteins of Par3 PDZ domains. By combiningthe GST-pull-down approach with liquid chromatography-tandem mass spectrometry, we identified 10 potential novel binding proteins of PDZ domains of Par3 in Jurkat cells (a T-cell line). The interaction of Par3 with three proteins—nuclear transport protein importin-α4 and proteasome activators PA28β and PA28γ—was confirmed using in vitro binding assay, co-immunoprecipitation assay and immunofluorescence microscopy. Our results have the potential to uncover novel functions of the cell polarity protein Par3 in blood cells. 相似文献