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Responses of Sulfur-Containing Compounds in Lemna paucicostata Hegelm. 6746 to Changes in Availability of Sulfur Sources

机译:Lemna paucicostata Hegelm中的含硫化合物响应。 6746改变硫源的有效性

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摘要

The steady state concentrations of S-containing compounds formed in Lemna paucicostata Hegelm. 6746 in response to variations in source and concentrations of sulfur were measured. Neither growth rates nor protein accumulation were markedly affected by the various growth conditions. Ignoring complications due to possible compartmentation, the results are consistent with internal pools of both SO42− and cyst(e)ine (or products of their metabolism), but not methionine, being effectors of regulation of high affinity SO42− uptake. As SO42− in the growth medium was increased to 10 mm, down-regulation of high affinity SO42− uptake was more than compensated for by unregulated uptake via the “non-saturating” uptake system. Tissue inorganic SO42− accumulated but formation of reduced sulfur remained constant. Some conversion of l-cystine sulfur to SO42− occurred. Presence of l-cystine in the medium (a) down-regulated high affinity SO42− uptake and (b) decreased the rate of SO42− organification. The net results were decreased (7 μm l-cystine) or normal (14 μm l-cystine) total tissue SO42− and dose-dependent accumulation of soluble cyst(e)ine and glutathione, but not of soluble methionine. l-Methionine was not metabolized to cyst(e)ine or its products. Presence of l-methionine in the medium led to increased total tissue sulfur, accounted for almost wholly by manyfold increases in soluble methionine, AdoMet, and S-methylmethionine sulfonium. Soluble cyst(e)ine increased slightly.
机译:在Lemna paucicostata Hegelm中形成的含S化合物的稳态浓度。响应于源和硫浓度的变化,测量了6746。生长速度和蛋白质积累均不受各种生长条件的影响。忽略由于可能的分隔而引起的并发症,其结果与SO4 2-和胱氨酸(e)ine(或其代谢产物)的内部库(而不是蛋氨酸)的内部库相一致,蛋氨酸是高浓度调节的效应器亲和力SO4 2-吸收。当生长培养基中的SO4 2-增加到10 mm时,高亲和力SO4 2-摄取的下调比通过“非饱和”摄取系统。组织无机SO4 2-积累,但还原硫的形成保持恒定。左旋胱氨酸硫转化为SO4 2-。 l-胱氨酸在培养基中的存在(a)下调高亲和力SO4 2-的摄取,(b)降低SO4 2-的组织速率。最终结果是,总组织SO4 2-减少了(7μml-胱氨酸)或正常组织(14μml-胱氨酸)的水平,可溶性胱氨酸和谷胱甘肽的剂量依赖性积累却没有,可溶性蛋氨酸。 l-蛋氨酸未代谢成胱氨酸(e)或其产物。培养基中l-蛋氨酸的存在导致组织总硫增加,几乎完全是可溶性蛋氨酸,AdoMet和S-甲基蛋氨酸sulf的许多倍增长。可溶性胱氨酸略有增加。

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