39 research outputs found

    Lactate dehydrogenase localization in an astrocytic cell line.

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    <p>A) Hoechst stain for the nucleus. B) Rhodamine B stain utilized for mitochondrial localization. C) FITC tagged secondary for anti-LDH. D) Merged image of Hoechst, Rhodamine B, and FITC. Note: Yellow spots are indicative of LDH associated with the mitochondria.</p

    The versatile role of a mitochondrial LDH in an astrocytic cell line.

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    <p>Lactate may be obtained either directly via uptake or by conversion of glucose through the glycolytic pathways.</p

    Lactate consumption by mitochondria derived from this astrocytic cell line.

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    <p>I) Mitochondria were incubated with 5mM lactate and 0.1mM NAD<sup>+</sup>. The time dependent consumption of lactate by the mitochondria was measured using HPLC. II) The purity of the mitochondrial and cytoplasmic fractions were confirmed using VDAC and F-actin respectively. III) Mitochondrial lactate consumption was confirmed using NMR spectroscopy. Data were acquired after 15min and 60min respectively. n = 3, mean±SD</p

    Localization of LDH in the mitochondria.

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    <p>Mitochondria were isolated and separated into A) Mitoplast and B) Outer membrane and inner membrane space fractions. I) Immunoblot for LDH1 in the mitochondrial fractions. II) Immunoblot for Cyt C and SDH to determine purity of mitochondrial fractions. Std corresponds to LDH from porcine heart (Sigma).</p

    Lactate promotes aerobic respiration in astrocytic mitochondria.

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    <p>I) Mitochondria from an astrocytic cell line were isolated and oxygen consumption was measured over a 5 min period, utilizing an oxygen electrode (Orion®). Mitochondria were incubated with 5 mM substrate, 0.5 mM NAD<sup>+</sup>, and 0.5 mM ADP. A reaction buffer blank was also analyzed to ensure proper instrument calibration. II) In gel activity of cytochrome C oxidase. A) CCF-STTG1 cells incubated with 2.5 mM lactate. B) CCF-STTG1 cells incubated with 2.5mM glucose. C) CCF-STTG1 cells; incubated with 2.5 mM citrate.</p

    Lactate as a source of mitochondrial energy in an astrocytic cell line.

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    <p>Mitochondria were incubated with 5 mM lactate or 5 mM citrate, 0.1 mM NAD<sup>+</sup>, and 0.1 mM ADP for varying time intervals. Nucleotide levels were measured by HPLC using a C<sub>18</sub> reverse phase column. I) ATP/ADP ratio in mitochondria. Open bar □ = ADP, and closed bar ▪ = ATP II) NAD<sup>+</sup>/NADH ratio in mitochondria incubated with lactate. Open bar □ = NADH, and closed bar ▪ = NAD<sup>+</sup>. Peaks were confirmed by utilizing known standards and by spiking the samples. n = 3, mean±SD</p

    Oxidative metabolism of lactate in astrocytic mitochondria.

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    <p>Mitochondria isolated from CCF-STTG1 cells were incubated in 10 mM <sup>13</sup>C<sub>3</sub>–lactate, 0.1 mM NAD<sup>+</sup> and 1 µM NaN<sub>3</sub> for varying time intervals. Accumulation of TCA cycle intermediates were measured via I) HPLC and II) NMR spectroscopy. HPLC fractions were also confirmed by enzymatic assays (citrate, succinate, and fumarate).</p

    BN PAGE analyses of LDH in an astrocytic cell line.

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    <p>I) Mitochondrial fraction. II) Soluble fraction. A) Coomassie stain for LDH from porcine heart (Sigma). B) Coomassie stain for LDH from porcine muscle (Sigma). C) In gel detection of LDH activity with 0 mM NAD<sup>+</sup>. D) In gel detection of LDH activity with 0.1 mM NAD<sup>+</sup>. E) In gel detection of LDH activity with 0.5 mM NAD<sup>+</sup>. F) In gel detection of LDH activity with 0.5 mM NAD<sup>+</sup> and 2 mM AgNO<sub>3</sub>.</p

    Lactate utilization by an astrocytic cell line.

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    <p>CCF-STTG1 cultures were supplemented with 2.5 mM lactate in serum free media. Lactate measurements were performed using HPLC (Reezex organic acid column) at various time intervals. Viable cell counts were performed using the Trypan Blue Exclusion Assay. • Corresponds to viable cell number of the astrocytic cells grown in serum free α-MEM+2.5 mM lactate. ○ Corresponds to viable cell number of astrocytic cells grown in serum free α-MEM. ▪ Corresponds to relative amount of lactate levels in the spent fluid (lactate cultures). n = 3, mean±SD</p

    Determination of PC, PEPCK, and PK activity and expression in control and menadione-stressed cells.

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    <p>Panel A) In-gel detection of PC activity. <i>Lanes 1, 2, and 3</i> correspond to membrane CFE from cells grown in control media for 15, 24, and 30 hrs. <i>Lanes 4, 5, 6, and 7</i> correspond to membrane CFE from cells grown in menadione-stressed media for 25, 30, 35, and 40 hrs. Panel B) 2D SDS-PAGE analysis of PC expression. In-gel activity bands were excised and resolved by 2D SDS-PAGE to determine protein levels. <i>Lane 1 and 2</i> correspond to control and menadione-stress cultures. Proteins were detected by silver staining. Panel C) Immunoblot analysis of PC expression. <i>Lane 1 and 2</i> correspond to the control and menadione-stress cultures. Panel D) Regulation of PEPCK activity. <i>Lane 1, 2, and 3</i> correspond to soluble control CFE, soluble menadione-stress CFE, and soluble CFE of control cells transferred into a menadione-stress media. Panel E) In-gel activity analysis of PK. <i>Lane 1</i>: corresponds to control and <i>Lane 2</i>: corresponds to menadione-stressed soluble CFE. Cells were isolated at similar growth phases (25 h for control and 30 h for menadione) unless otherwise indicated.</p
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