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1. Assembling the anaerobic gamma-butyrobetaine to TMA metabolic pathway in Escherichia fergusonii and confirming its role in TMA production from dietary L-carnitine in murine models

2. Gut microbe-targeted choline trimethylamine lyase inhibition improves obesity via rewiring of host circadian rhythms

3. Gut Microbiota–Derived Trimethylamine N-Oxide Contributes to Abdominal Aortic Aneurysm Through Inflammatory and Apoptotic Mechanisms

4. Gut Microbiota-Generated Phenylacetylglutamine and Heart Failure

5. Small molecule inhibition of gut microbial choline trimethylamine lyase activity alters host cholesterol and bile acid metabolism

6. Apolipoprotein A-I anti-tumor activity targets cancer cell metabolism

7. Author response: Gut microbe-targeted choline trimethylamine lyase inhibition improves obesity via rewiring of host circadian rhythms

8. Two distinct gut microbial pathways contribute to meta-organismal production of phenylacetylglutamine with links to cardiovascular disease

9. Vascular endothelial tissue factor contributes to trimethylamine N-oxide-enhanced arterial thrombosis

10. The microbial gbu gene cluster links cardiovascular disease risk associated with red meat consumption to microbiota L-carnitine catabolism

11. Gut Microbe-Targeted Choline Trimethylamine Lyase Inhibition Improves Obesity Via Rewiring of Host Circadian Rhythms

12. Gut microbe-targeted choline trimethylamine lyase inhibition improves obesity via rewiring of host circadian rhythms

13. Targeted inhibition of gut microbial TMAO production reduces renal tubulointerstitial fibrosis and functional impairment in a murine model of chronic kidney disease

14. Development of a gut microbe–targeted nonlethal therapeutic to inhibit thrombosis potential

15. Myeloid-specific genetic ablation of ATP-binding cassette transporter ABCA1 is protective against cancer

16. Site-specific 5-hydroxytryptophan incorporation into apolipoprotein A-I impairs cholesterol efflux activity and high-density lipoprotein biogenesis

17. Gut microbes impact stroke severity via the trimethylamine N-oxide pathway

18. Abstract 430: Development of a Gut-microbe Targeted Non-lethal Therapeutic to Inhibit Thrombosis Potential Without Enhanced Bleeding

19. Untargeted metabolomics identifies trimethyllysine, a TMAO-producing nutrient precursor, as a predictor of incident cardiovascular disease risk

20. Non-lethal Inhibition of Gut Microbial Trimethylamine Production for the Treatment of Atherosclerosis

21. Transmission of Atherosclerosis Susceptibility with Gut Microbial Transplantation

22. Flavin monooxygenase 3, the host hepatic enzyme in the metaorganismal trimethylamine N-oxide-generating pathway, modulates platelet responsiveness and thrombosis risk

23. CROTONOBETAINE IS A PROATHEROGENIC GUT MICROBIOTA METABOLITE OF L-CARNITINE

24. An abundant dysfunctional apolipoprotein A1 in human atheroma

25. 2 H 2 O-Based High-Density Lipoprotein Turnover Method for the Assessment of Dynamic High-Density Lipoprotein Function in Mice

26. The Cardioprotective Protein Apolipoprotein A1 Promotes Potent Anti-tumorigenic Effects

27. Intestinal microbiota metabolism of L-carnitine, a nutrient in red meat, promotes atherosclerosis

28. Myeloperoxidase-mediated protein lysine oxidation generates 2-aminoadipic acid and lysine nitrile in vivo

29. Eosinophil Peroxidase Catalyzed Protein Carbamylation Participates in Asthma*

30. A Systematic Investigation of Structure/Function Requirements for the Apolipoprotein A-I/Lecithin Cholesterol Acyltransferase Interaction Loop of High-density Lipoprotein

31. Gut Microbiota-Dependent Trimethylamine N-oxide (TMAO) Pathway Contributes to Both Development of Renal Insufficiency and Mortality Risk in Chronic Kidney Disease

32. γ-Butyrobetaine is a proatherogenic intermediate in gut microbial metabolism of L-carnitine to TMAO

33. Prognostic value of choline and betaine depends on intestinal microbiota-generated metabolite trimethylamine-N-oxide

34. Effects of native and myeloperoxidase-modified apolipoprotein a-I on reverse cholesterol transport and atherosclerosis in mice

35. Gut Microbial Metabolite TMAO Enhances Platelet Hyperreactivity and Thrombosis Risk

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