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Establishment and Propagation of Human Retinoblastoma Tumors in Immune Deficient Mice
Published on: August 4, 2011
Caspase 3 deficiency rescues peripheral nervous system defect in retinoblastoma nullizygous mice
M T Simpson1, J G MacLaurin, D Xu
1Neuroscience Research Institute, University of Ottawa, Ottawa, Ontario, K1H-8M5, Canada.
Abstract:
The retinoblastoma tumor suppressor protein, pRb, is a key regulator of cell cycle and has been implicated in the terminal differentiation of neuronal cells. Mice nullizygous for pRb die by embryonic day 14.5 from hematopoietic and neurological defects attributed to failed differentiation (Clarke et al., 1992; Jacks et al., 1992; Lee et al., 1992). Previous studies by MacLeod et al. (1996) have demonstrated that the loss of p53 protects Rb-deficient CNS neurons but not peripheral nervous system (PNS) neurons from cell death. Thus, the mechanisms by which PNS neurons undergo apoptosis in response to Rb deficiency remain unknown. In view of the pivotal role of caspase 3 in the regulation of neuronal apoptosis during development, we examined its function in the execution of the wide-spread neuronal cell death induced by Rb deficiency. Our results support a number of conclusions. First, we show that caspase 3 becomes activated in all neuronal populations undergoing apoptosis. Second, caspase 3 deficiency does not extend the life span of Rb null embryos, because double null mutants exhibit high rates of liver apoptosis resulting in erythropoietic failure. Third, Rb/caspase 3 double-mutant neurons of the CNS exhibit widespread apoptosis similar to that seen in Rb mutants alone; thus caspase 3 deficiency does not protect this population from apoptosis. Finally, in contrast to the CNS, neurons of the PNS including those comprising the trigeminal ganglia and the dorsal root ganglia are protected from apoptosis in Rb/caspase 3 double-mutant embryos. Examination of the mechanistic differences between these two cell types suggest that CNS neurons may invoke other caspases to facilitate apoptosis in the absence of caspase 3. These findings suggest that PNS neurons are dependent on caspase 3 for the execution of apoptosis and that caspase 3 may serve as a key therapeutic target for neuroprotection after injury of this cell type.
Insights
Retinoblastoma protein (pRb) deficiency causes neuronal apoptosis. Caspase 3 is crucial for peripheral nervous system (PNS) neuron death, but not central nervous system (CNS) neuron death, suggesting caspase 3 as a therapeutic target for PNS neuroprotection.
Area of Science:
- Molecular Biology
- Neuroscience
- Developmental Biology
Background:
- The retinoblastoma tumor suppressor protein (pRb) is vital for cell cycle regulation and neuronal differentiation.
- pRb deficiency leads to embryonic lethality due to hematopoietic and neurological defects, with failed differentiation.
- While p53 loss protects Rb-deficient central nervous system (CNS) neurons, peripheral nervous system (PNS) neuron apoptosis mechanisms remain unclear.
Purpose of the Study:
- To investigate the role of caspase 3 in executing neuronal apoptosis caused by retinoblastoma protein (pRb) deficiency.
- To elucidate the differential mechanisms of apoptosis in CNS and PNS neurons in response to pRb loss.
Main Methods:
- Analysis of caspase 3 activation in neuronal populations undergoing apoptosis in pRb-deficient models.
- Generation and examination of retinoblastoma protein (pRb)/caspase 3 double-mutant embryos.
- Comparative assessment of apoptosis rates in CNS and PNS neurons between single and double mutants.
Main Results:
- Caspase 3 activation was observed in all apoptotic neuronal populations.
- Caspase 3 deficiency did not rescue Rb null embryos, indicating liver apoptosis and erythropoietic failure.
- Rb/caspase 3 double-mutant CNS neurons showed widespread apoptosis, while PNS neurons (trigeminal and dorsal root ganglia) were protected.
Conclusions:
- Peripheral nervous system (PNS) neurons depend on caspase 3 for apoptosis execution following retinoblastoma protein (pRb) deficiency.
- Central nervous system (CNS) neurons may utilize alternative caspases for apoptosis in the absence of caspase 3.
- Caspase 3 inhibition presents a potential therapeutic strategy for neuroprotection in the PNS.

