Literature DB >> 18178099

Crystallins of the beta/gamma-superfamily mimic the effects of lens injury and promote axon regeneration.

Dietmar Fischer1, Thomas G Hauk, Adrienne Müller, Solon Thanos.   

Abstract

Adult retinal ganglion cells (RGCs) can survive axotomy and regrow lengthy axons when exposed to lens injury (LI). The neuroprotective and axon-growth-promoting effects of LI have been attributed to an infiltration of activated macrophages into the inner eye and recently also to astrocyte-derived CNTF. The present work reveals that certain purified lens proteins (crystallins) cause the effects of LI. Intravitreal injections of beta- or gamma-crystallins, but not of alpha-crystallin, strongly enhanced axon regeneration from retinal explants in culture, within peripheral nerve grafts or the crushed optic nerve. Deposition of the effective crystallins within the vitreous body was also associated with an influx of circulating macrophages and an activation of retinal astrocytes, Müller cells, and resident microglia. Furthermore beta-crystallin induced CNTF expression in retinal astrocytes and activation of CNTF's major downstream signaling pathway (JAK/STAT3) when intravitreally injected or added to the culture medium ex vivo. Consistently, in culture the addition of beta- and gamma-crystallins to the medium also increased axon regeneration from retinal explants. These results demonstrate that crystallins of the beta/gamma-superfamily are the lens-derived activators of cascades, which lead to axonal regeneration and suggest that their effects might be mediated by astrocyte-derived CNTF.

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Year:  2007        PMID: 18178099     DOI: 10.1016/j.mcn.2007.11.002

Source DB:  PubMed          Journal:  Mol Cell Neurosci        ISSN: 1044-7431            Impact factor:   4.314


  42 in total

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Review 2.  Heat shock proteins in the retina: Focus on HSP70 and alpha crystallins in ganglion cell survival.

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3.  Proteomic profiling reveals crucial retinal protein alterations in the early phase of an experimental glaucoma model.

Authors:  Fabian Anders; Julia Teister; Sebstian Funke; Norbert Pfeiffer; Franz Grus; Thanos Solon; Verena Prokosch
Journal:  Graefes Arch Clin Exp Ophthalmol       Date:  2017-05-24       Impact factor: 3.117

4.  Neuroprotective and axon growth-promoting effects following inflammatory stimulation on mature retinal ganglion cells in mice depend on ciliary neurotrophic factor and leukemia inhibitory factor.

Authors:  Marco Leibinger; Adrienne Müller; Anastasia Andreadaki; Thomas G Hauk; Matthias Kirsch; Dietmar Fischer
Journal:  J Neurosci       Date:  2009-11-11       Impact factor: 6.167

5.  TRPV1 on astrocytes rescues nigral dopamine neurons in Parkinson's disease via CNTF.

Authors:  Jin H Nam; Eun S Park; So-Yoon Won; Yu A Lee; Kyoung I Kim; Jae Y Jeong; Jeong Y Baek; Eun J Cho; Minyoung Jin; Young C Chung; Byoung D Lee; Sung Hyun Kim; Eung-Gook Kim; Kyunghee Byun; Bonghee Lee; Dong Ho Woo; C Justin Lee; Sang R Kim; Eugene Bok; Yoon-Seong Kim; Tae-Beom Ahn; Hyuk Wan Ko; Saurav Brahmachari; Olga Pletinkova; Juan C Troconso; Valina L Dawson; Ted M Dawson; Byung K Jin
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6.  Effects of crystallin-β-b2 on stressed RPE in vitro and in vivo.

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Review 7.  Crystallins in retinal ganglion cell survival and regeneration.

Authors:  Natik Piri; Jacky M K Kwong; Joseph Caprioli
Journal:  Mol Neurobiol       Date:  2013-05-25       Impact factor: 5.590

8.  Functional whole-genome analysis identifies Polo-like kinase 2 and poliovirus receptor as essential for neuronal differentiation upstream of the negative regulator alphaB-crystallin.

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Journal:  J Biol Chem       Date:  2009-08-21       Impact factor: 5.157

Review 9.  The role of macrophages in optic nerve regeneration.

Authors:  Q Cui; Y Yin; L I Benowitz
Journal:  Neuroscience       Date:  2008-07-25       Impact factor: 3.590

10.  Differential response of C57BL/6J mouse and DBA/2J mouse to optic nerve crush.

Authors:  Justin P Templeton; Mohamed Nassr; Felix Vazquez-Chona; Natalie E Freeman-Anderson; William E Orr; Robert W Williams; Eldon E Geisert
Journal:  BMC Neurosci       Date:  2009-07-30       Impact factor: 3.288

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