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Cytomegalovirus infection lengthens the cell cycle of granule cell precursors during postnatal cerebellar development
Cathy Yea Won Sung, Mao Li, Stipan Jonjic, Veronica Sanchez, William J. Britt
Cathy Yea Won Sung, Mao Li, Stipan Jonjic, Veronica Sanchez, William J. Britt
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Research Article Inflammation Neuroscience

Cytomegalovirus infection lengthens the cell cycle of granule cell precursors during postnatal cerebellar development

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Abstract

Human cytomegalovirus (HCMV) infection in infants infected in utero can lead to a variety of neurodevelopmental disorders. However, mechanisms underlying altered neurodevelopment in infected infants remain poorly understood. We have previously described a murine model of congenital HCMV infection in which murine CMV (MCMV) spreads hematogenously and establishes a focal infection in all regions of the brain of newborn mice, including the cerebellum. Infection resulted in disruption of cerebellar cortical development characterized by reduced cerebellar size and foliation. This disruption was associated with altered cell cycle progression of the granule cell precursors (GCPs), which are the progenitors that give rise to granule cells (GCs), the most abundant neurons in the cerebellum. In the current study, we have demonstrated that MCMV infection leads to prolonged GCP cell cycle, premature exit from the cell cycle, and reduced numbers of GCs resulting in cerebellar hypoplasia. Treatment with TNF-α neutralizing antibody partially normalized the cell cycle alterations of GCPs and altered cerebellar morphogenesis induced by MCMV infection. Collectively, our results argue that virus-induced inflammation altered the cell cycle of GCPs resulting in a reduced numbers of GCs and cerebellar cortical hypoplasia, thus providing a potential mechanism for altered neurodevelopment in fetuses infected with HCMV.

Authors

Cathy Yea Won Sung, Mao Li, Stipan Jonjic, Veronica Sanchez, William J. Britt

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Figure 5

Prolonged GCP cell cycle during MCMV infection is not due to the lengthening of G2/M phase.

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Prolonged GCP cell cycle during MCMV infection is not due to the lengthe...
(A) The duration of G2/M phase (TG2+M) was determined by single-dose BrdU labeling for 1, 1.5, and 2 hours and stained for BrdU (red) and for pHH3 (green) to define cells in G2/M phase; see Figure 4A for the schedule of the in vivo cumulative BrdU labeling protocol. pHH3+BrdU– cells (light blue open circle) are pHH3+ cells not in S phase at the time of BrdU injection. BrdU+pHH3+ cells (yellow open circle) are cells that incorporated BrdU in the S phase and reached G2/M phase. Scale bar: 30 μm. (B) pHH3 labeling index (pHH3 LI = BrdU+pHH3+/total pHH3+ GCPs in the EGL [%]) was determined. Please refer to Table 1 for cell cycle length (G2/M phase). Data are shown as mean ± SD, n = 4–6 mice/experimental group of the cerebellum. P values were calculated using 2-tailed t test. *P < 0.05; **P < 0.01; ****P < 0.0001.

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