Mouse targets undergo double-strand DNA fragmentation when exposed to syngeneic or xenogeneic LAK cells whereas human

Z Brahmi1, A Tomita, G Hommel-Berrey

  • 1Department of Medicine, Indiana University School of Medicine, Indianapolis.

Natural Immunity and Cell Growth Regulation
|January 1, 1991
PubMed

Insights

Target cells (TC) undergoing DNA fragmentation depends on the cell type, not the effector cells. Mouse TC show double-strand breaks, while human TC exhibit single-strand nicks during lymphocyte-mediated lysis.

Area of Science:

  • Immunology
  • Molecular Biology
  • Cell Biology

Background:

  • Cytotoxic lymphocytes induce DNA fragmentation in target cells (TC).
  • The mechanism and significance of this DNA fragmentation are not fully understood.

Purpose of the Study:

  • To investigate the differential DNA fragmentation patterns in mouse and human TC upon lysis by LAK cells.
  • To determine if DNA fragmentation is a property of the effector or target cells.

Main Methods:

  • Generated mouse (M-LAK) and human (H-LAK) cells and exposed them to various mouse and human TC.
  • Labeled TC with 125I-deoxyuridine and analyzed DNA integrity using alkaline sucrose gradient centrifugation.
  • Assessed DNA fragmentation and lytic activity (chromium release).

Main Results:

  • Mouse TC (YAC, SP/2) underwent rapid double-strand DNA fragmentation when lysed by LAK cells.
  • Human TC (K562, Daudi) exhibited single-strand nicks after prolonged contact with LAK cells, despite efficient killing.
  • DNA fragmentation occurred independently of protein synthesis and was a characteristic of the TC.

Conclusions:

  • The susceptibility to DNA fragmentation is an intrinsic property of the target cell.
  • Distinct DNA damage patterns (double-strand vs. single-strand breaks) occur in mouse and human TC during LAK-mediated lysis.