» Articles » PMID: 38752723

Long-term Hematopoietic Transfer of the Anti-cancer and Lifespan-extending Capabilities of a Genetically Engineered Blood System by Transplantation of Bone Marrow Mononuclear Cells

Abstract

A causal relationship exists among the aging process, organ decay and disfunction, and the occurrence of various diseases including cancer. A genetically engineered mouse model, termed or (K74R), carrying mutation on the well-conserved sumoylation site of the hematopoietic transcription factor KLF1/EKLF has been generated that possesses extended lifespan and healthy characteristics, including cancer resistance. We show that the healthy longevity characteristics of the (K74R) mice, as exemplified by their higher anti-cancer capability, are likely gender-, age-, and genetic background-independent. Significantly, the anti-cancer capability, in particular that against melanoma as well as hepatocellular carcinoma, and lifespan-extending property of (K74R) mice, could be transferred to wild-type mice via transplantation of their bone marrow mononuclear cells at a young age of the latter. Furthermore, NK(K74R) cells carry higher in vitro cancer cell-killing ability than wild-type NK cells. Targeted/global gene expression profiling analysis has identified changes in the expression of specific proteins, including the immune checkpoint factors PDCD and CD274, and cellular pathways in the leukocytes of the (K74R) that are in the directions of anti-cancer and/or anti-aging. This study demonstrates the feasibility of developing a transferable hematopoietic/blood system for long-term anti-cancer and, potentially, for anti-aging.

Citing Articles

Long-term hematopoietic transfer of the anti-cancer and lifespan-extending capabilities of a genetically engineered blood system by transplantation of bone marrow mononuclear cells.

Wang J, Hung C, Liou Y, Liu C, Yeh K, Wang K Elife. 2024; 12.

PMID: 38752723 PMC: 11098557. DOI: 10.7554/eLife.88275.

References
1.
Luo Q, Ma X, Wahl S, Bieker J, Crossley M, Montaner L . Activation and repression of interleukin-12 p40 transcription by erythroid Kruppel-like factor in macrophages. J Biol Chem. 2004; 279(18):18451-6. PMC: 2965204. DOI: 10.1074/jbc.M400320200. View

2.
Fontana L, Partridge L . Promoting health and longevity through diet: from model organisms to humans. Cell. 2015; 161(1):106-118. PMC: 4547605. DOI: 10.1016/j.cell.2015.02.020. View

3.
Nishizawa M, Chonabayashi K, Nomura M, Tanaka A, Nakamura M, Inagaki A . Epigenetic Variation between Human Induced Pluripotent Stem Cell Lines Is an Indicator of Differentiation Capacity. Cell Stem Cell. 2016; 19(3):341-54. DOI: 10.1016/j.stem.2016.06.019. View

4.
Castellano J, Mosher K, Abbey R, McBride A, James M, Berdnik D . Human umbilical cord plasma proteins revitalize hippocampal function in aged mice. Nature. 2017; 544(7651):488-492. PMC: 5586222. DOI: 10.1038/nature22067. View

5.
Neuwirtova R, Fuchs O, Holicka M, Vostry M, Kostecka A, Hajkova H . Transcription factors Fli1 and EKLF in the differentiation of megakaryocytic and erythroid progenitor in 5q- syndrome and in Diamond-Blackfan anemia. Ann Hematol. 2012; 92(1):11-8. DOI: 10.1007/s00277-012-1568-1. View