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Biochemical Mosaic I. c.12. The porosomal secretory system requires anioic lipids including phosphatidic acid. DJGPhD.21.2.24
Biochemical Mosaic I. c.12. The porosomal secretory system requires anioic lipids including phosphatidic acid. DJGPhD.21.2.24

Dr. Guerra: membrane graduate biochemistry lecture notes

J Cell Mol Med . 2015 Jul;19(7):1427-40

Langmuir, 2018, 34 (1), pp 530–539

Elgar, E. 1900. T…

2 years, 3 months ago

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Biochemical Mosaic I.c.11. Glycerolipid metabolism coupled to mTORC1 enzyme phosphorylation necessarily involves a complete analysis of membrane lipid molecular species distribution.DJGPhD.20.2.24
Biochemical Mosaic I.c.11. Glycerolipid metabolism coupled to mTORC1 enzyme phosphorylation necessarily involves a complete analysis of membrane lipid molecular species distribution.DJGPhD.20.2.24

References

Nature . 2019 Nov;575(7782):361-365.

Adv Biol Regul. 2017 May:64:39-48

J Biol Chem. 2013 Apr 5; 288(14): 9933–9945

Redox Biology.2017. V…

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Biochemical Mosaic I c.10. Is PE depletion reversed by mTORC1 phosphorylation of LIPIN1 or is  DAG authentically activating CCT via membrane association thus obtaining robust PL synthesis? DJGPhD.
Biochemical Mosaic I c.10. Is PE depletion reversed by mTORC1 phosphorylation of LIPIN1 or is DAG authentically activating CCT via membrane association thus obtaining robust PL synthesis? DJGPhD.







References

Biochim Biophys Acta. 2011 Jun;1811(6):377-85

Am J Physiol Lung Cell Mol Physiol 2001. 281: L98–L107.

Biochimica et Biophysica Acta…

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Biochemical Mosaic I. c.9 Increased inner mitochondrial membrane PE from PS decarboxylase decreases protease mediated degradation of phospholipid transfer proteins thus maintaining fusion potency.
Biochemical Mosaic I. c.9 Increased inner mitochondrial membrane PE from PS decarboxylase decreases protease mediated degradation of phospholipid transfer proteins thus maintaining fusion potency.

References

PLoS Biol 2014. 12(10): e1001969

J Biol Chem. 2012 May18;287(21):17589-17597

J Biol Chem. 2012 Nov 23;287(48):40131-9

Nature 2019. volume …

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Biochemical Mosaic I PA-phosphatase c.8. Membrane fusion and the dynamics of mitochondrial reduction vs. proliferation; the PA phosphatase in lipid metabolism. DJGPhD. 16.2.24 Authentic Biochemistry
Biochemical Mosaic I PA-phosphatase c.8. Membrane fusion and the dynamics of mitochondrial reduction vs. proliferation; the PA phosphatase in lipid metabolism. DJGPhD. 16.2.24 Authentic Biochemistry

References

Dr Guerra membrane lectures archive

FASEB J. 2021 Jun; 35(6): e21620.

Vivaldi, A. 1711. Concerto for 4 Violins in B minor RV 580

https://…

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Biochemical Mosaic I. Phosphatidic acid Phosphatase. c.7. Mutational reversal of IDH1 leads to NADPH depletion concomitant with potent anti-PHD enantiomeric 2-hydroxyglutarate obtaining pseudohypoxia.
Biochemical Mosaic I. Phosphatidic acid Phosphatase. c.7. Mutational reversal of IDH1 leads to NADPH depletion concomitant with potent anti-PHD enantiomeric 2-hydroxyglutarate obtaining pseudohypoxia.

References FEMS Microbiol Rev.1998. Oct;22(4):255-75

Discoveries(Craiova). 2017 Jul-Sep; 5(3): e77.

J Cell Mol Med. 2015 Jul; 19(7): 1427–1440.

Onc…

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Biochemical Mosaic I. The PA phosphatase c.6. Alteration of the TCA pathway intermediates and hypoxia/nutrient deficiency control HIF1α stability indirectly regulating IMM protein and lipid turnover.
Biochemical Mosaic I. The PA phosphatase c.6. Alteration of the TCA pathway intermediates and hypoxia/nutrient deficiency control HIF1α stability indirectly regulating IMM protein and lipid turnover.

References

Front. Oncol. 2017. 26 November.V.7.

Oncogene. 2017 Mar 23; 36(12): 1607–1618.

Schubert, F. 1819 Piano Quintet in A major, D. 667/ "Trout…

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The Biochemical Mosaic I. Phosphatidic Acid Phosphatase c.5. Tumor cells adapt bioenergetic fuel economy toward cell immortalization via re-crafting of mitochondrial IM lipid speciation.DJGPhD.12Feb24
The Biochemical Mosaic I. Phosphatidic Acid Phosphatase c.5. Tumor cells adapt bioenergetic fuel economy toward cell immortalization via re-crafting of mitochondrial IM lipid speciation.DJGPhD.12Feb24

References

Cell Metabolism 2019. 30: 720–734

Nature 2019. 575: 361–365

Squire, C. 1978. "Onward" Yes.




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Biochemical Mosaic I. Phosphatidic Acid Phosphatase c.4 GLN utilization and an IMM protease regulate mitochondrial involvement in cancer growth. DJGPhD. Authentic Biochemistry 10Feb24
Biochemical Mosaic I. Phosphatidic Acid Phosphatase c.4 GLN utilization and an IMM protease regulate mitochondrial involvement in cancer growth. DJGPhD. Authentic Biochemistry 10Feb24

References

Cell Death & Disease 2022. volume 13.Article number: 444.

Nature 2019. volume 575, pages 361–365

Scientific Reports 2021. volume 11, Arti…

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Biochemical Mosaic Event Ontologies I. Phosphatidic Acid Phosphatase. c.3 Indirect consequences of mitochondrial proteomic variation potentially obtains GLN-linked Warburg glycolysis preventing ROS.
Biochemical Mosaic Event Ontologies I. Phosphatidic Acid Phosphatase. c.3 Indirect consequences of mitochondrial proteomic variation potentially obtains GLN-linked Warburg glycolysis preventing ROS.

References

Cell Metabolism 2019. 30, 720–734

Redox Biology2013. Volume 1, Issue 1: 427-432

Nature 2019. volume 575. 361–365 Mozart, WA, 1779.Sinfonia…

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