TY - JOUR
T1 - Brain-specific angiogenesis inhibitor-1 expression in astrocytes and neurons
T2 - Implications for its dual function as an apoptotic engulfment receptor
AU - Sokolowski, Jennifer D.
AU - Nobles, Suzanne L.
AU - Heffron, Daniel S.
AU - Park, Daeho
AU - Ravichandran, Kodi S.
AU - Mandell, James W.
N1 - Funding Information:
J.W.M. is supported by NS065447. K.S.R. is supported by grants from the NIH/NIGMS and an award from the Goldhirsh Foundation. We thank Kendra Keith (Lab of Howard Goodkin, University of Virginia, Department of Neurology) for mixed neuronal/glial cultures and Hannelore Asmussen (Lab of Rick Horwitz, University of Virginia, Department of Cell Biology) for hippocampal neuron cultures.
PY - 2011/7
Y1 - 2011/7
N2 - Brain-specific angiogenesis inhibitor-1 (BAI1) is a transmembrane protein highly expressed in normal brain that has been ascribed two apparently distinct functions: inhibition of angiogenesis and recognition and engulfment of apoptotic cells by phagocytes. A previous localization study reported BAI1 expression only in neurons. Because a phagocytic function of BAI1 could be important for neuroglial antigen processing and presentation, we performed immunolocalization studies in adult mouse brain and cultured neural cells, using a pair of antibodies directed against N- and C-terminal epitopes. BAI1 immunoreactivity is enriched in gray matter structures and largely excluded from myelinated axon tracts. Neuronal BAI1 expression was readily detectable in the cerebellar molecular layer as well as in primary hippocampal cultures. In some brain regions, especially olfactory bulb glomeruli, BAI1 was expressed by GFAP-positive astrocytes. Cultured cortical astrocytes show small (∼0.4μm2) BAI1 immunoreactive membrane puncta as well as prominent focal adhesion localization in a subset of cells. In mixed neuronal-glial cultures, BAI1-expressing astrocytes frequently contained engulfed apoptotic debris. Cultured astrocytes engulfed apoptotic targets, and BAI1 showed accumulation within the phagocytic cup. We hypothesize that glial BAI1 may subserve an engulfment function in adult brain regions such as olfactory bulb with ongoing apoptotic turnover, whereas neuronal-derived BAI1 may serve primarily as an anti-angiogenic factor in the mature neuropil.
AB - Brain-specific angiogenesis inhibitor-1 (BAI1) is a transmembrane protein highly expressed in normal brain that has been ascribed two apparently distinct functions: inhibition of angiogenesis and recognition and engulfment of apoptotic cells by phagocytes. A previous localization study reported BAI1 expression only in neurons. Because a phagocytic function of BAI1 could be important for neuroglial antigen processing and presentation, we performed immunolocalization studies in adult mouse brain and cultured neural cells, using a pair of antibodies directed against N- and C-terminal epitopes. BAI1 immunoreactivity is enriched in gray matter structures and largely excluded from myelinated axon tracts. Neuronal BAI1 expression was readily detectable in the cerebellar molecular layer as well as in primary hippocampal cultures. In some brain regions, especially olfactory bulb glomeruli, BAI1 was expressed by GFAP-positive astrocytes. Cultured cortical astrocytes show small (∼0.4μm2) BAI1 immunoreactive membrane puncta as well as prominent focal adhesion localization in a subset of cells. In mixed neuronal-glial cultures, BAI1-expressing astrocytes frequently contained engulfed apoptotic debris. Cultured astrocytes engulfed apoptotic targets, and BAI1 showed accumulation within the phagocytic cup. We hypothesize that glial BAI1 may subserve an engulfment function in adult brain regions such as olfactory bulb with ongoing apoptotic turnover, whereas neuronal-derived BAI1 may serve primarily as an anti-angiogenic factor in the mature neuropil.
KW - Angiogenesis
KW - Apoptosis
KW - Astrocyte
KW - Clearance
KW - Engulfment
KW - Neuron
KW - Phagocytosis
UR - https://www.scopus.com/pages/publications/79957912374
U2 - 10.1016/j.bbi.2010.09.021
DO - 10.1016/j.bbi.2010.09.021
M3 - Article
C2 - 20888903
AN - SCOPUS:79957912374
SN - 0889-1591
VL - 25
SP - 915
EP - 921
JO - Brain, Behavior, and Immunity
JF - Brain, Behavior, and Immunity
IS - 5
ER -