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111.
Summary We screened for immunoglobulin (Ig) production stimulating factor (IPSF) which enhanced Ig production of human-to-human hybridomas in serum-free culture, and found that culture supernatant and lysate of human lymphoblastoid Namalwa cells stimulated proliferation and Ig production of human-to-human hybridoma HB4C5 cells. The IPSF in Namalwa lysate was partially purified with DEAE-Toyopearl 650M, hydroxylapatite and Superose 6HR 10/30 column chromatographies. The partially purified IPSF was a macromolecule of about 500 000 dalton containing 72 000 dalton protein as a major component. The activity was stable at pH 6 to 12, but inactivated partially by heating over 40° C (60% decrease) and completely by trypsin digestion. These results suggest that the IPSF activity is due to its protein and heat-stable components. The Namalwa IPSF stimulated proliferation of human-to-human hybridomas but not that of mouse-to-mouse hybridomas. The IPSF also stimulated Ig production of human-to-human hybridomas derived from NAT-30 cells, but not that of other human-to-human or mouse-to-mouse hybridomas. NAT-30 is a human fusion partner derived from Namalwa cells. These results suggest that the Namalwa IPSF is an autocrine factor that stimulates proliferation and Ig production of hybridomas derived from NAT-30 cells. This work was supported in part by a grant-in-aid from the Ministry of Education, Science and Culture (Japan) and by Sapporo Bioscience Foundation.  相似文献   
112.
Peng L  Wang S  Yin S  Li C  Li Z  Wang S  Liu Q 《Cryobiology》2008,57(2):175-177
Effective cryopreservation is a highly desired outcome in many laboratories including clinical and research centers. Cryopreservation-induced cellular damage through necrosis and apoptosis has been well characterized. However, our knowledge of the mechanism of induction of these cell death modalities is limited. H2AX histone phosphorylation to γ-H2AX is a DNA damage response and is an excellent indicator of DNA double stranded break formation. In this study we examined and detected significant phosphorylation of H2AX in response to cryopreservation of HELF and B16 cell lines. The data provide strong evidence of intrinsic alterations in DNA repair pathway members for which the impact is yet to be fully understood. While further investigation will be necessary to characterize this response, our findings show a clear linkage between freezing resulting in phosphorylation and activation of the key DNA repair enzyme H2AX.  相似文献   
113.
114.
Free-floating coelomocytes in the tentacular coelomic cavity of the sipunculan Thysanocardia nigra Ikeda, 1904, were studied using light interference contrast microscopy and scanning and transmission electron microscopy. The following coelomocyte types were distinguished: hemerythrocytes, amoebocytes, and two morphological types of granular cells. No clusters of specialized cells that had been reported to occur in the trunk coelom of Th. nigra were found in the tentacular coelom. The corresponding types of coelomocytes from the tentacular and trunk coelomic cavities were shown to differ in size. These two coeloms are completely separated in sipunculans.  相似文献   
115.
Yeast phase lysate antigens prepared from different isolates of Blastomyces dermatitidis (T-58, dog-Tennessee; T-27, polar bear-Tennessee; ERC-2, dog-Wisconsin; ER-3, woodpile-Wisconsin) were compared with respect to the detection of antibodies (indirect enzyme-linked immunosorbent assay-ELISA, peroxidase system) in 126 serial serum specimens (pre-treatment, 30 and 60 days post-treatment with itraconazole) from 42 dogs with diagnosed blastomycosis. Mean absorbance values observed with the four lysate antigens at the three treatment intervals ranged from the most reactive to the least reactive as follows: T-58 (0.270, 0.210, 0.136); T-27 (0.209, 0.156, 0.096); ER-3 (0.189, 0.144, 0.089) and ERC-2 (0.158, 0.129, 0.080). Even though variations in reactivity were evidenced, the lysates prepared from isolates from various geographical regions and sources were all efficacious as antigens for the immunodiagnosis of canine blastomycosis.  相似文献   
116.
Lee HJ  Kim MS  Kim YK  Oh YK  Baek KH 《FEBS letters》2005,579(21):4867-4872
The tumor suppressor protein p53 is ubiquitinated and neddylated by MDM2 and then degraded by 26S proteasome. However, p53 is stabilized by the HAUSP (Herpes-virus-associated ubiquitin-specific protease) deubiquitinating enzyme. In this study, we discovered that rat HAUSP (rHAUSP) is polyubiquitinated, polyneddylated, and dimerized using co-immunoprecipitation assays. This suggests that rHAUSP may function as a dimer or multimer and is also degraded through the proteasome-mediated degradation. Transfection of rHAUSP into RGC-Lac-Z cell line with the integrated p53 response element revealed that rHAUSP contributed to p53 stabilization, and a rHAUSP (C224S) mutant contributed to p53 destabilization in a dose-dependent manner.  相似文献   
117.
Zhou YB  Liu F  Zhu ZD  Zhu H  Zhang X  Wang ZQ  Liu JH  Han ZG 《FEBS letters》2004,576(3):401-407
The present study reported the isolation and characterization of a novel human secreted protein, named as hPAP21 (human protease-associated domain-containing protein, 21 kDa), encoded by the hypothetical gene chromosome 2 open reading frame 7 (C2orf7) that contains signal peptide in its N-terminus, without transmembrane domain, except for PA domain in its middle. Western blotting assay indicated that the c-Myc tagged hPAP21 could be secreted into culture medium in the transfected Chinese hamster ovary cells. However, the molecular weights, whatever intracellular (28 kDa) or extracellular (30 kDa) forms, are larger than that of the prediction. To define whether the glycosylation was important process for its secretion, endoglycosidase H (Endo H) and PNGase F (PNG F) were employed to evaluate the effect of glycosylation types on secretion of hPAP21. Interestingly, the extracellular forms were primarily sensitive to PNG F, not Endo H, implying that complex N-glycosylation could be required for the secretion of hPAP21. Furthermore, N-glycosylation of Asn171 was confirmed as potential crucial process for the secretory protein via site-directed mutagenesis assay. All data will be contributed to the understanding of molecular functions of hPAP21.  相似文献   
118.
Purpose: We wanted to study whether an allogeneic melanoma lysate would be a feasible stimulatory antigen source for detection of a peripheral CD4+ T-cell immune response in patients with medically untreated malignant melanoma. The lysate was produced from a melanoma cell line (FM3.29) which expresses high amounts of melanoma antigens. Methods: Fresh peripheral blood was incubated with and without lysate for 6 h in the presence of anti-CD28/anti-CD49d MoAb (for costimulation). After flow cytometric estimation of the frequency of CD69+/IFN-+ cells in the CD4+ population, the response to lysate was calculated as the difference between the number of activated IFN--producing CD4+ cells in the lysate-stimulated and the nonstimulated sample. Results: An immune response to lysate was observed in blood samples from 11 of 15 patients (73%) with metastatic melanoma. A weak response was found in 1 of 4 patients radically operated for localized disease, whereas no responders were seen among 7 healthy donors. The fraction of circulating lysate-activated T cells ranged from 0.0037% to 0.080% of the CD4+ population. A negative result of the assay was found occasionally, especially in donors with high background levels of spontaneous IFN- production, indicating an inhibitory effect of the lysate. Conclusions: This method for detection of a peripheral T-cell immune response in melanoma patients has several advantages for clinical use. The tumor lysate preparations may contain large numbers of stimulating antigens (known, as well as unknown) and are easily prepared and handled. Potentially, the assay might be useful as a diagnostic tool, a marker of residual or recurrent disease, a prognostic factor, or a predictor or monitor of the effect of antineoplastic therapy including immune-modulating therapy.  相似文献   
119.
When taking up the gauntlet of studying membrane protein functionality, scientists are provided with a plethora of advantages, which can be exploited for the synthesis of these difficult-to-express proteins by utilizing cell-free protein synthesis systems. Due to their hydrophobicity, membrane proteins have exceptional demands regarding their environment to ensure correct functionality. Thus, the challenge is to find the appropriate hydrophobic support that facilitates proper membrane protein folding. So far, various modes of membrane protein synthesis have been presented. Here, we summarize current state-of-the-art methodologies of membrane protein synthesis in biomimetic-supported systems. The correct folding and functionality of membrane proteins depend in many cases on their integration into a lipid bilayer and subsequent posttranslational modification. We highlight cell-free systems utilizing the advantages of biological membranes.  相似文献   
120.
Hepatitis C virus (HCV) translation begins within the internal ribosome entry site (IRES). We have previously isolated two RNA aptamers, 2-02 and 3-07, which specifically bind to domain II and domain III-IV of the HCV IRES, respectively, and inhibit IRES-dependent translation. To improve the function of these aptamers, we constructed two conjugated molecules of 2-02 and 3-07. These bound to the target RNA more efficiently than the two parental aptamers. Furthermore, they inhibited IRES-dependent translation about 10 times as efficiently as the 3-07 aptamer. This result indicates that combining aptamers for different target recognition sites potentiates the inhibition activity by enhancing the domain-binding efficiency.  相似文献   
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