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Home › Dataset Library › Kras is required for pancreatic tumor maintenance through regulation of hexosamine biosynthesis and the non-oxidative pentose phosphate...

Dataset: Kras is required for pancreatic tumor maintenance through regulation of hexosamine biosynthesis and the non-oxidative pentose phosphate pathway

The maintenance of advanced malignancies relies on continued activity of driver oncogenes, although their rate-limiting role is highly...

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The maintenance of advanced malignancies relies on continued activity of driver oncogenes, although their rate-limiting role is highly context-dependent with respect to tumor types and associated genetic alterations. Oncogenic Kras mutation is the signature event in human pancreatic ductal adenocarcinoma (PDAC), serving a critical role in tumor initiation. Here, an inducible KrasG12D-driven p53 mutant PDAC mouse model establishes that advanced PDAC remains strictly dependent on continued KrasG12D expression and that KrasG12D serves a vital role in the control of tumor metabolism, through stimulation of glucose uptake and channeling of glucose intermediates through the hexosamine biosynthesis pathway (HBP) and the pentose phosphate pathway (PPP). Notably, these studies reveal that oncogenic Kras regulates ribose biogenesis. Unlike canonical models of PPP-mediated ribose biogenesis, we demonstrate that oncogenic Kras drives intermediates from enhanced glycolytic flux into the non-oxidative arm of the PPP, thereby decoupling ribose biogenesis from NADPNADPH-mediated redox control. Together, this work provides in vivo mechanistic insights into how oncogenic Kras promotes metabolic reprogramming in native tumors and illuminates potential metabolic targets that can be exploited for therapeutic benefit in Kras-driven PDAC. Primary pancreatic tumor lines were established from p48Cre tetO_LKrasG12D ROSA_rtTAL+ p53L+ mice. Five independent tumor lines (iKras1-5) were used for pancreatic injection into nude mice to generate orthotopic tumors. The mice were kept on doxycycline for 2 weeks until obvious tumor formation. Half of the animals were pulled off doxycycline for 24 hours. Tumors with over 75% cellularity were collected for total RNA prepartion. For in vitro expression profiles, the same five tumor lines were cultured in the presence or absence of doxycycline for 24 hours and total cellular RNA was prepared. For control samples, two independent tumor lines from LSL-KrasG12D p53L+ tumors were cultured in the presence or absence of doxycycline for 24 hours and total cellular RNA was prepared.

Species:
mouse

Samples:
33

Source:
E-GEOD-32277

PubMed:
22541435

Updated:
Dec.12, 2014

Registered:
Nov.11, 2014


Factors: (via ArrayExpress)
Sample CELL TYPE TREATMENT
GSM799673 pancreatic xenograft tumor generated from iKras5 doxycycline
GSM799673 pancreatic xenograft tumor generated from iKras5 doxycycline
GSM799675 pancreatic xenograft tumor generated from iKras5 off doxycycline
GSM799675 pancreatic xenograft tumor generated from iKras5 off doxycycline
GSM799677 pancreatic xenograft tumor generated from iKras1 doxycycline
GSM799677 pancreatic xenograft tumor generated from iKras1 doxycycline
GSM799679 pancreatic xenograft tumor generated from iKras1 off doxycycline
GSM799680 pancreatic xenograft tumor generated from iKras2 doxycycline
GSM799680 pancreatic xenograft tumor generated from iKras2 doxycycline
GSM799682 pancreatic xenograft tumor generated from iKras2 off doxycycline
GSM799682 pancreatic xenograft tumor generated from iKras2 off doxycycline
GSM799684 pancreatic xenograft tumor generated from iKras3 doxycycline
GSM799684 pancreatic xenograft tumor generated from iKras3 doxycycline
GSM799686 pancreatic xenograft tumor generated from iKras3 off doxycycline
GSM799686 pancreatic xenograft tumor generated from iKras3 off doxycycline
GSM799688 pancreatic xenograft tumor generated from iKras4 doxycycline
GSM799688 pancreatic xenograft tumor generated from iKras4 doxycycline
GSM799690 pancreatic xenograft tumor generated from iKras4 off doxycycline
GSM799690 pancreatic xenograft tumor generated from iKras4 off doxycycline
GSM799692 parental culture of iKras5 doxycycline
GSM799693 parental culture of iKras1 doxycycline
GSM799694 parental culture of iKras2 doxycycline
GSM799695 parental culture of iKras3 doxycycline
GSM799696 parental culture of iKras4 doxycycline
GSM799697 parental culture of iKras5 off doxycycline
GSM799698 parental culture of iKras1 off doxycycline
GSM799699 parental culture of iKras2 off doxycycline
GSM799700 parental culture of iKras3 off doxycycline
GSM79970 parental culture of iKras4 off doxycycline
GSM799702 culture of LSL-Kras2 doxycycline
GSM799702 culture of LSL-Kras2 doxycycline
GSM799704 culture of LSL-Kras1 doxycycline
GSM799705 culture of LSL-Kras1 off doxycycline

Tags

  • adenocarcinoma
  • arm
  • ductal adenocarcinoma
  • glucose
  • pancreatic ductal adenocarcinoma
  • pancreatic tumor

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