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1. The structural basis for monoclonal antibody 5D2 binding to the tryptophan-rich loop of lipoprotein lipase

2. An upstream enhancer regulates Gpihbp1 expression in a tissue-specific manner[S]

3. Impaired thermogenesis and sharp increases in plasma triglyceride levels in GPIHBP1-deficient mice during cold exposure

4. Apolipoprotein C-III inhibits triglyceride hydrolysis by GPIHBP1-bound LPL[S]

5. Mutating a conserved cysteine in GPIHBP1 reduces amounts of GPIHBP1 in capillaries and abolishes LPL binding

6. Monoclonal antibodies that bind to the Ly6 domain of GPIHBP1 abolish the binding of LPL

7. Mobility of 'HSPG-bound' LPL explains how LPL is able to reach GPIHBP1 on capillaries

8. An LPL–specific monoclonal antibody, 88B8, that abolishes the binding of LPL to GPIHBP1[S]

9. Human COQ9 Rescues a coq9 Yeast Mutant by Enhancing Coenzyme Q Biosynthesis from 4-Hydroxybenzoic Acid and Stabilizing the CoQ-Synthome

10. GPIHBP1 expression in gliomas promotes utilization of lipoprotein-derived nutrients

11. An upstream enhancer regulates Gpihbp1 expression in a tissue-specific manner[S]

12. The structural basis for monoclonal antibody 5D2 binding to the tryptophan-rich loop of lipoprotein lipase

13. Mutating a conserved cysteine in GPIHBP1 reduces amounts of GPIHBP1 in capillaries and abolishes LPL binding

14. Autoantibodies against GPIHBP1 as a Cause of Hypertriglyceridemia

15. Monoclonal antibodies that bind to the Ly6 domain of GPIHBP1 abolish the binding of LPL

16. Mobility of 'HSPG-bound' LPL explains how LPL is able to reach GPIHBP1 on capillaries

17. GPIHBP1 and Lipoprotein Lipase, Partners in Plasma Triglyceride Metabolism

18. Author response: GPIHBP1 expression in gliomas promotes utilization of lipoprotein-derived nutrients

19. Lipoprotein lipase is active as a monomer

20. Characterization of Coq11, a novel protein involved in the biosynthesis of coenzyme Q in Saccharomyces cerevisiae

21. Impaired thermogenesis and sharp increases in plasma triglyceride levels in GPIHBP1-deficient mice during cold exposure[S]

22. NanoSIMS Analysis of Intravascular Lipolysis and Lipid Movement across Capillaries and into Cardiomyocytes

23. Lipoprotein lipase reaches the capillary lumen in chickens despite an apparent absence of GPIHBP1

24. Palmoplantar keratoderma in Slurp1/Slurp2 double-knockout mice

25. Apolipoprotein C-III inhibits triglyceride hydrolysis by GPIHBP1-bound LPL

26. A hypomorphic Egfr allele does not ameliorate the palmoplantar keratoderma caused by SLURP1 deficiency

27. Characterization of Saccharomyces cerevisiae Coenzyme Q Biosynthetic Protein Coq11

28. Human COQ9 Rescues a coq9 Yeast Mutant by Enhancing Coenzyme Q Biosynthesis from 4-Hydroxybenzoic Acid and Stabilizing the CoQ-Synthome

29. An LPL–specific monoclonal antibody, 88B8, that abolishes the binding of LPL to GPIHBP1[S]

30. Expression of the human atypical kinase ADCK3 rescues coenzyme Q biosynthesis and phosphorylation of Coq polypeptides in yeast coq8 mutants

31. Biochemistry: Unexpected role for vitamin B2

32. Coq9 regulates the deamination of Q6‐intermediates in yeast Q biosynthesis and human Coq9 homolog rescues yeast coq9 mutant by increasing the incorporation of 4‐hydroxybenzoic acid

33. Characterization of Proteins Associated with the Coenzyme Q Biosynthetic Complex and Analyses of Phosphorylated Coq Proteins in Yeast Mitochondria

34. Identification of Coq11, a new coenzyme Q biosynthetic protein in the CoQ-synthome in Saccharomyces cerevisiae

36. Characterization of proteins associated with a coenzyme Q biosynthetic complex in yeast mitochondria (605.19)

37. Unexpected role for vitamin B2

39. A conserved START domain coenzyme Q-binding polypeptide is required for efficient Q biosynthesis, respiratory electron transport, and antioxidant function in Saccharomyces cerevisiae

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