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Production of diacylglycerol, an activator of protein kinase C, by human intestinal microflora.
Cancer Res. 1990 Jun 15; 50(12):3595-9.CR

Abstract

Although dietary lipids have been implicated in colon cancer causation, the underlying mechanisms are not known. This paper indicates that when bacteria obtained from normal human feces are incubated with 14C-labeled phosphatidylcholine there is appreciable production of diacylglycerol (DAG), monoacylglycerol, and free fatty acid. Curiously, the production of DAG and monoacylglycerol, but not fatty acid, is strictly dependent on addition of certain bile acids to the incubation system. Among the bile acids tested deoxycholic acid is the most active. Assays of fecal specimens from 10 normal individuals demonstrate a 27-fold interindividual variation in the production of DAG in the in vitro assay system, and also in the absolute levels of DAG present in the same fecal samples. On the other hand, both parameters of DAG are quite constant in repeated fecal samples obtained from the same individual over a period of about 4 months. DAG is a normal physiological activator of protein kinase C, an enzyme that plays a key role in growth control and tumor promotion. We speculate, therefore, that DAG produced by the intestinal microflora might stimulate growth of colonic epithelial cells. Thus an interaction between dietary lipids, bile acids, and specific bacteria in the intestinal lumen could contribute to the risk of colon cancer development in humans.

Authors+Show Affiliations

Department of Surgery, Columbia-Presbyterian Medical Center, Columbia University, New York, New York 10032.No affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article
Research Support, Non-U.S. Gov't

Language

eng

PubMed ID

2340507

Citation

Morotomi, M, et al. "Production of Diacylglycerol, an Activator of Protein Kinase C, By Human Intestinal Microflora." Cancer Research, vol. 50, no. 12, 1990, pp. 3595-9.
Morotomi M, Guillem JG, LoGerfo P, et al. Production of diacylglycerol, an activator of protein kinase C, by human intestinal microflora. Cancer Res. 1990;50(12):3595-9.
Morotomi, M., Guillem, J. G., LoGerfo, P., & Weinstein, I. B. (1990). Production of diacylglycerol, an activator of protein kinase C, by human intestinal microflora. Cancer Research, 50(12), 3595-9.
Morotomi M, et al. Production of Diacylglycerol, an Activator of Protein Kinase C, By Human Intestinal Microflora. Cancer Res. 1990 Jun 15;50(12):3595-9. PubMed PMID: 2340507.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Production of diacylglycerol, an activator of protein kinase C, by human intestinal microflora. AU - Morotomi,M, AU - Guillem,J G, AU - LoGerfo,P, AU - Weinstein,I B, PY - 1990/6/15/pubmed PY - 1990/6/15/medline PY - 1990/6/15/entrez SP - 3595 EP - 9 JF - Cancer research JO - Cancer Res VL - 50 IS - 12 N2 - Although dietary lipids have been implicated in colon cancer causation, the underlying mechanisms are not known. This paper indicates that when bacteria obtained from normal human feces are incubated with 14C-labeled phosphatidylcholine there is appreciable production of diacylglycerol (DAG), monoacylglycerol, and free fatty acid. Curiously, the production of DAG and monoacylglycerol, but not fatty acid, is strictly dependent on addition of certain bile acids to the incubation system. Among the bile acids tested deoxycholic acid is the most active. Assays of fecal specimens from 10 normal individuals demonstrate a 27-fold interindividual variation in the production of DAG in the in vitro assay system, and also in the absolute levels of DAG present in the same fecal samples. On the other hand, both parameters of DAG are quite constant in repeated fecal samples obtained from the same individual over a period of about 4 months. DAG is a normal physiological activator of protein kinase C, an enzyme that plays a key role in growth control and tumor promotion. We speculate, therefore, that DAG produced by the intestinal microflora might stimulate growth of colonic epithelial cells. Thus an interaction between dietary lipids, bile acids, and specific bacteria in the intestinal lumen could contribute to the risk of colon cancer development in humans. SN - 0008-5472 UR - https://www.unboundmedicine.com/medline/citation/2340507/Production_of_diacylglycerol_an_activator_of_protein_kinase_C_by_human_intestinal_microflora_ DB - PRIME DP - Unbound Medicine ER -