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The structural transformation of fructose-1,6-bisphosphatase upon binding of the allosteric regulator AMP dramatically changes the interactions across the C1-C4 (C2-C3) subunit interface of the enzyme. Asn9, Met18, and Ser87 residues were modified by site-directed mutagenesis to probe the function of the interface residues in porcine liver fructose-1,6-bisphosphatase. The wild-type and mutant forms of the enzyme were purified to homogeneity and characterized by initial rate kinetics and circular dichroism (CD) spectrometry. No discernible alterations in structure were observed among the wild-type and Asn9Asp, Met18Ile, Met18Arg, and Ser87Ala mutant forms of the enzyme as measured by CD spectrometry. Kinetic analyses revealed 1.6- and 1.8-fold increases in kcat with Met18Arg and Asn9Asp, respectively. The K(m) for fructose 1,6-bisphosphate increased about 2-approximately 4-fold relative to that of the wild-type enzyme in the four mutants. A 50-fold lower Ka value for Mg2+ compared with that of the wild-type enzyme was obtained for Met18Ile with no alteration of the Ki for AMP. However, the replacement of Met18 with Arg caused a dramatic decrease in AMP affinity (20 000-fold) without a change in Mg2+ affinity. Increases of 6- and 2-fold in the Ki values for AMP were found with Asn9Asp and Ser87Ala, respectively. There was no difference in the cooperativity for AMP inhibition between the wild-type and the mutant forms of fructose-1,6-bisphosphatase. This study demonstrates that the mutation of residues in the C1-C4 (C2-C3) interface of fructose-1,6-bisphosphatase can significantly affect the affinity for Mg2+, which is presumably bound 30 A away. Moreover the mutations alternatively reduce AMP and Mg2+ affinities, and this finding may be associated with the destabilization of the corresponding allosteric states of the enzyme. The kinetics and structural modeling studies of the interface residues provide new insights into the conformational equilibrium of fructose-1,6-bisphosphatase.  相似文献   
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Decrease in activity of hypothalamic beta-endorphin (beta-EP) is an important factor for inducing the preovulatory LH surge. To study whether hypothalamic mu opioid receptor is involved in this process, changes in densities of hypothalamic mu opioid receptors were observed in this study by autoradiography and image process during cupric acetate (CuAC)-induced preovulatory LH surge in rabbits. New Zealand female rabbits were injected 1% CuAC 0.9 ml or saline 0.9 ml and sacrificed at different times after the injection. The densities of mu opioid receptor in the medial basal hypothalamus (MBH) and the medial preoptic area (MPO) were measured. A transient increase in densities of MPO mu opioid receptor were observed 1 h after CuAC injection (P < 0.05). The densities of MPO mu opioid receptor decreased significantly before the onset of the LH surge (P < 0.05) and remained at a low level during the surge. The change in densities of mu opioid receptor in the MBH was similar to those in the MPO. No change was observed in the saline control group. There was a negative correlation between the changes in densities of MBH mu opioid receptor and serum LH levels in the process of LH surge. The results suggest that the decrease of hypothalamic mu opioid receptor may be involved in the preovulatory LH surge.  相似文献   
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We hypothesized that an in vitro bioartificial skin rejection model using living LSEs grown in tissue culture could be developed for the study of autologous, allogenic, and/or xenogeneic inflammatory/immune mechanisms and topical immunosuppressive drugs. Human fibroblasts were mixed with type 1 rat-tail collagen to form a matrix (4 to 5 days), on which human keratinocytes were seeded. After a keratinocyte monolayer formed, CT cultures were raised to the air-liquid interface for continued growth. In the REJ LSE model, immunocytes isolated from human blood were seeded on top of the NHEK monolayer at the time of air-lifting. Thickness measurements of the acellular keratin and keratinocyte layers, and nuclear/cytoplasmic ratios, in both CT and REJ were made using digital image analysis. Immunostaining with anticytokeratin demonstrated a viable, keratin-producing epidermal layer; staining with anti-TGF-beta suggested a role for this cytokine in the rejection or wound-healing process. The LSE appeared histologically similar to normal human epidermis. Immunocytes added to the REJ cultures caused an obvious rejection response and were clearly identifiable in the gels as CD45+ staining cells. The LSE model appears promising for the study of immune/inflammatory mechanisms, thermal injury, screening antirejection agents that might be applied topically and as an in vitro replacement for skin graft studies in animals.  相似文献   
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BACKGROUND: A new anticancer therapy, electrochemotherapy (ECT), has been introduced that entails exposing cancerous tissues to short pulses of electricity during chemotherapy. This enhances cell membrane permeability and has been shown to have potent antitumor effects in vitro in animal models and in several clinical trials, including nevoid basal cell carcinoma (BCC). OBJECTIVE: We report the effects of ECT on 20 patients with primary BCC. METHODS: Electrical pulses were delivered to 54 tumors after administration of intralesional bleomycin sulfate. RESULTS: Complete responses were observed in 53 (98%), and in the majority of these (94%) after a single treatment. No recurrences have been recorded with a mean of 18 months of observation. CONCLUSION: Although these are preliminary results, ECT appears to be an effective alternative to surgical excision for the treatment of primary BCC.  相似文献   
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