AI Article Synopsis

  • The study investigates how peritoneal macrophages from tumor-bearing mice have reduced ability to attack tumor cells and produce nitric oxide (NO) when stimulated, which could be improved by IFN-gamma.
  • It focuses on the role of signaling molecules and transcription factors in the decreased expression of the iNOS gene, which is responsible for NO production.
  • Findings reveal that reduced PKC activity, as well as changes in transcription factor binding, contribute to the lower iNOS levels and, consequently, the impaired immune response in these tumor-associated macrophages.

Article Abstract

In previous studies we have shown that peritoneal macrophages (PEM) from mammary tumor-bearing BALB/c mice (T-PEM) display a diminished ability to lyse tumor cells upon stimulation with LPS, a phenomenon that is associated to a lower production of nitric oxide, and that is reverted upon costimulation with IFN-gamma. The reduced lytic activity and NO production displayed by T-PEM upon LPS activation were earlier shown by us to be due to a diminished transcription of the inducible nitric oxide synthase (iNOS) gene. In the present study, we have investigated the participation of possible signaling molecules and transcription factors - PKC, NF-kappaB, C/EBP and IRF-1 - in the downregulation of NO production in LPS-activated T-PEM. It was found that PKC activity was greatly reduced in T-PEM as compared to normal macrophages, and did not respond to activation. Interestingly, the different PKC isozyme levels were not significantly altered in T-PEM, with the exception of PKC delta. Alterations in the binding activity of the transcription factors NF-kappaB and C/EBP appeared to be involved in the reduced transcription of iNOS previously observed in T-PEM after LPS activation. These results provide evidence that reductions in iNOS transcription secondary to alterations in cell signaling may be responsible for the diminished capacity of macrophages of LPS-activated tumor-bearers to produce NO and lyse tumor targets.

Download full-text PDF

Source

Publication Analysis

Top Keywords

transcription factors
12
nitric oxide
12
pkc activity
8
production nitric
8
lyse tumor
8
t-pem lps
8
lps activation
8
nf-kappab c/ebp
8
transcription
6
t-pem
6

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!