Apoptosis-inducing factor (AIF) has important supportive as well as potentially lethal roles in neurons. Under normal physiological conditions, AIF is a vital redox-active mitochondrial enzyme, whereas in pathological situations, it translocates from mitochondria to the nuclei of injured neurons and mediates apoptotic chromatin condensation and cell death. In this study, we reveal the existence of a brain-specific isoform of AIF, AIF2, whose expression increases as neuronal precursor cells differentiate. AIF2 arises from the utilization of the alternative exon 2b, yet uses the same remaining 15 exons as the ubiquitous AIF1 isoform. AIF1 and AIF2 are similarly imported to mitochondria in which they anchor to the inner membrane facing the intermembrane space. However, the mitochondrial inner membrane sorting signal encoded in the exon 2b of AIF2 is more hydrophobic than that of AIF1, indicating a stronger membrane anchorage of AIF2 than AIF1. AIF2 is more difficult to be desorbed from mitochondria than AIF1 on exposure to non-ionic detergents or basic pH. Furthermore, AIF2 dimerizes with AIF1, thereby preventing its release from mitochondria. Conversely, it is conceivable that a neuron-specific AIF isoform, AIF2, may have been 'designed' to be retained in mitochondria and to minimize its potential neurotoxic activity.

A brain-specific isoform of mitochondrial apoptosis-inducing factor: AIF2 / Hangen, E; De Zio, D; Bordi, M; Zhu, C; Dessen, P; Caffin, F; Lachkar, S; Perfettini, J. L; Lazar, V; Benard, J; Fimia, Gian Maria; Piacentini, M; Harper, F; Pierron, G; Vicencio, J. M; Bénit, P; de Andrade, A; Höglinger, G; Culmsee, C; Rustin, P; Blomgren, K; Cecconi, F; Kroemer, G; Modjtahedi, N.. - In: CELL DEATH AND DIFFERENTIATION. - ISSN 1476-5403. - 17:(2010), pp. 1155-1166. [10.1038/cdd.2009.211]

A brain-specific isoform of mitochondrial apoptosis-inducing factor: AIF2

FIMIA, Gian Maria;
2010

Abstract

Apoptosis-inducing factor (AIF) has important supportive as well as potentially lethal roles in neurons. Under normal physiological conditions, AIF is a vital redox-active mitochondrial enzyme, whereas in pathological situations, it translocates from mitochondria to the nuclei of injured neurons and mediates apoptotic chromatin condensation and cell death. In this study, we reveal the existence of a brain-specific isoform of AIF, AIF2, whose expression increases as neuronal precursor cells differentiate. AIF2 arises from the utilization of the alternative exon 2b, yet uses the same remaining 15 exons as the ubiquitous AIF1 isoform. AIF1 and AIF2 are similarly imported to mitochondria in which they anchor to the inner membrane facing the intermembrane space. However, the mitochondrial inner membrane sorting signal encoded in the exon 2b of AIF2 is more hydrophobic than that of AIF1, indicating a stronger membrane anchorage of AIF2 than AIF1. AIF2 is more difficult to be desorbed from mitochondria than AIF1 on exposure to non-ionic detergents or basic pH. Furthermore, AIF2 dimerizes with AIF1, thereby preventing its release from mitochondria. Conversely, it is conceivable that a neuron-specific AIF isoform, AIF2, may have been 'designed' to be retained in mitochondria and to minimize its potential neurotoxic activity.
2010
Amino Acid Sequence; Animals; Apoptosis Inducing Factor; Apoptosis Regulatory Proteins; Brain; Cell Differentiation; Cell Line; Tumor; Humans; Mice; Mitochondria; Mitochondrial Proteins; Molecular Sequence Data; Neurons; Protein Isoforms; Sequence Alignment
01 Pubblicazione su rivista::01a Articolo in rivista
A brain-specific isoform of mitochondrial apoptosis-inducing factor: AIF2 / Hangen, E; De Zio, D; Bordi, M; Zhu, C; Dessen, P; Caffin, F; Lachkar, S; Perfettini, J. L; Lazar, V; Benard, J; Fimia, Gian Maria; Piacentini, M; Harper, F; Pierron, G; Vicencio, J. M; Bénit, P; de Andrade, A; Höglinger, G; Culmsee, C; Rustin, P; Blomgren, K; Cecconi, F; Kroemer, G; Modjtahedi, N.. - In: CELL DEATH AND DIFFERENTIATION. - ISSN 1476-5403. - 17:(2010), pp. 1155-1166. [10.1038/cdd.2009.211]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1319226
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