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21.
Preparation of RNA from cotton leaves and pollen 总被引:16,自引:1,他引:15
22.
It is well established that somatotropin (GH) antagonizes insulin action in vivo and that supraphysiologic concentrations of GH frequently result in insulin resistance and glucose intolerance. However, the demonstration of an anti-insulin activity by GH in vitro has been difficult. This study, therefore, set out to determine whether cultures of 3T3-L1 adipocytes could be used to examine the anti-insulin activity of GH. The ability of insulin to stimulate glucose utilization by 3T3-L1 adipocytes increases approximately five-fold during the first 4 days following treatment of the cells with a differentiation medium. It was found that glucose utilization in 3T3-L1 adipocytes is regulated in a reciprocal fashion by insulin and GH. Bovine or human GH directly inhibit up to 50% of insulin-stimulated [14C]-glucose incorporation into lipids in a concentration-dependent manner. The 3T3-L1 sensitivity to GH appears to be at the maximum (50% inhibition of an insulin response) immediately following removal of the cells from the differentiation medium and remains essentially constant during the subsequent 4 days. The GH inhibition of insulin action does not appear to be due GH enhancement of cellular degradation of insulin, competitive binding of GH to the insulin receptor, or GH-induced decrease in cell number. The 3T3-L1 adipocyte system appears to be a sensitive and reliable in vitro model with which to study the molecular mechanisms involved in both GH antagonism of insulin action and development of hormone responsiveness during cellular differentiation into adipocytes. 相似文献
23.
Susan H. Woods Gregory C. Phillips John E. Woods Glenn B. Collins 《Plant cell reports》1992,11(5-6):257-261
An efficient protocol has been developed for the in vitro propagation of Mexican Weeping Bamboo through somatic embryogenesis from zygotic embryo explants. Mature seeds and excised embryos were cultured in the light or in the dark on both Murashige and Skoog's and Gamborg's B5 basal media with various supplements. Optimal somatic embryogenesis and plant regeneration were obtained by culture in the dark on Murashige and Skoog's basal medium supplemented with 3 mg/1 2,4-dichlorophenoxyacetic acid, 0.5 mg/1 6-benzylaminopurine and 2.0% sucrose. More than 95% of the germinating somatic embryos developed shoots and roots, and were transferred to soil with 85% success. 相似文献
24.
Ronald S. Kaplan June A. Mayor Renee Blackwell Glenn L. Wilson Stephen W. Schaffer 《Molecular and cellular biochemistry》1991,107(1):79-86
The effect of non-insulin-dependent diabetes mellitus (i.e., NIDDM; type 2 diabetes) on the levels of functional mitochondrial anion transport proteins has been determined utilizing
a chemically-induced neonatal model of NIDDM. We hypothesized that moderate insulin deficiency exacerbated by the insulin
resistance, which is characteristic of NIDDM, would cause changes in mitochondrial anion transporter function that were similar
to those we have previously shown to occur in insulin-dependent diabetes mellitus (i.e., IDDM; type 1 diabetes) (Arch. Biochem. Biophys. 280: 181–191, 1990). Our experimental approach consisted of the extraction
of the pyruvate, dicarboxylate and citrate transport proteins from the mitochondrial inner membrane with Triton X-114 using
rat liver mitoplasts (prepared from diabetic and control animals) as the starting material, followed by the functional reconstitution
of each transporter in a proteoliposomal system. This strategy permitted the quantification of the functional levels of these
three transporters in the absence of the complications that arise when such measurements are carried out with intact mitochondria
(or mitoplasts). We found that experimental NIDDM did not cause significant changes in the extractable and reconstitutable
specific (and total) transport activities of the pyruvate, dicarboxylate, and citrate transporters. These results are in marked
contrast to our previous findings obtained using rats with IDDM and negated our hypothesis. The present results, in combination
with our earlier findings, allow us to conclude that insulin plays an important role in the regulation of mitochondrial anion
transporter function. Accordingly, in this model of NIDDM, where the level of insulin is not profoundly deficient, transporter
function is unaltered, whereas in IDDM, where a profound insulinopenia exists, transporter function is altered. Furthermore,
the present studies suggest that in the neonatal model of NIDDM the three mitochondrial transporters investigated are neither
affected by, nor are they the sites of the well documented hepatic post-receptor insulin resistance which is characteristic
of this disease. 相似文献
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