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大鼠肝脏组织悬液中的氧化型和还原型烟酰胺腺嘌呤二核苷酸磷酸

Oxidized and reduced nicotinamide-adenine dinucleotide phosphate in tissue suspensions of rat liver.

作者信息

Slater T F

出版信息

Biochem J. 1967 Sep;104(3):833-42. doi: 10.1042/bj1040833.

DOI:10.1042/bj1040833
PMID:4383080
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1271222/
Abstract
  1. The concentrations of NADP and NADPH(2) in homogenates of rat liver (expressed as mug./g. wet wt. of tissue homogenized) were compared with values obtained from intact samples of liver taken from the same female rat. With 0.25m-sucrose alone as the suspending medium, or in combination with tris buffer or 0.01-0.1m-nicotinamide, considerable decreases in the sum of the NADP+NADPH(2) concentrations were occasionally observed during 30min. storage of homogenates at 0 degrees . However, addition of 0.5m-nicotinamide+5mm-tris buffer to 0.25m-sucrose for use as a suspending medium maintained the sum of the NADP+NADPH(2) concentrations in homogenates at the level found in intact tissue for at least 30min. at 0 degrees . 2. The effects of freezing intact tissue and homogenates in liquid nitrogen before the extraction of NADP and NADPH(2) were studied. Freezing alone appears to convert a significant amount (approx. 30%) of liver NADPH(2) into an equivalent amount of NADP in intact tissue. This is discussed in terms of the ;bound NADP' reported by Burch, Lowry & Von Dippe (1963). 3. The intracellular distributions of NADP and NADPH(2) in intracellular fractions of rat liver were studied by using a modified centrifuging scheme that allows extraction of the isolated fractions to be performed within 45min. of killing the animal. Approx. 50% of the total NADP+NADPH(2) was found in the large-particle fractions and the remaining 50% was mostly in the soluble fraction of the cell. 4. Further investigations are reported on the nature of ;bound NADP' in rat liver. Most of this material appears associated with the ;nuclear' (containing nuclei, debris, erythrocytes etc.) or large-mitochondrial fractions, or both, obtained by low-speed centrifuging of rat-liver homogenates. 5. Although in some experiments the variations produced in the concentration of NADPH(2) present in large-particle fractions were followed by similar changes in that of ;bound NADP', in other cases no such direct relationship was obtained. Addition of phenazine methosulphate, for example, consistently lowered the concentration of NADPH(2) yet raised the concentration of ;bound NADP' in rat-liver mitochondrial fractions.
摘要
  1. 将大鼠肝脏匀浆中NADP和NADPH₂的浓度(以每克匀浆组织湿重中所含微克数表示)与取自同一只雌性大鼠的完整肝脏样本所获得的值进行比较。单独使用0.25m - 蔗糖作为悬浮介质,或与tris缓冲液或0.01 - 0.1m - 烟酰胺联合使用时,在0℃下将匀浆储存30分钟期间,偶尔会观察到NADP + NADPH₂浓度总和显著下降。然而,向0.25m - 蔗糖中添加0.5m - 烟酰胺 + 5mm - tris缓冲液作为悬浮介质,可使匀浆中NADP + NADPH₂浓度总和在0℃下至少30分钟内维持在完整组织中的水平。2. 研究了在提取NADP和NADPH₂之前,将完整组织和匀浆在液氮中冷冻的影响。单独冷冻似乎会使完整组织中相当数量(约30%)的肝脏NADPH₂转化为等量的NADP。这是根据Burch、Lowry和Von Dippe(1963年)报道的“结合型NADP”来讨论的。3. 通过使用一种改良的离心方案研究了大鼠肝脏细胞内各组分中NADP和NADPH₂的细胞内分布,该方案允许在处死动物后45分钟内对分离的组分进行提取。发现总NADP + NADPH₂的约50%存在于大颗粒组分中,其余50%主要存在于细胞的可溶性组分中。4. 报告了关于大鼠肝脏中“结合型NADP”性质的进一步研究。这种物质的大部分似乎与通过低速离心大鼠肝脏匀浆获得的“核”(包含细胞核、碎片、红细胞等)或大线粒体组分或两者相关。5. 尽管在一些实验中,大颗粒组分中NADPH₂浓度的变化伴随着“结合型NADP”浓度的类似变化,但在其他情况下并未获得这种直接关系。例如,添加吩嗪硫酸甲酯会持续降低大鼠肝脏线粒体组分中NADPH₂的浓度,但会提高“结合型NADP”的浓度。

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