Zhang Shibo, Liu Cuiping, Wang Qian, Zhou Haicong, Wu Hao, Zhuang Junyi, Cao Yiyang, Shi Hongwei, Zhang Jingfa, Wang Jiao
Laboratory of Molecular Neural Biology, School of Life Sciences, Shanghai University, 99 Shang Da Road, Shanghai, China.
Shanghai Public Health Clinical Center, Fudan University, Shanghai, China.
Heliyon. 2023 Feb 23;9(3):e13897. doi: 10.1016/j.heliyon.2023.e13897. eCollection 2023 Mar.
Deprivation of one sense can be followed by enhanced development of other senses via cross-modal plasticity mechanisms. To study the effect of whisker tactile deprivation on vision during the early stages of development, we clipped the bilateral whiskers of young mice and found that their vision was impaired but later recovered to normal levels. Our results demonstrate that inhibition of the PI3K/AKT/ERK signaling pathway caused short-term visual impairment during early development, while high expression levels of Crystallin Alpha A (CRYAA) and Gap Junction Protein Alpha 8 (GJA8) in the retina led to the recovery of developmental visual acuity. Interestingly, analysis of single-cell sequencing results from human embryonic retinas at 9-19 gestational weeks (GW) revealed that CRYAA and GJA8 display stage-specific peak expression during human embryonic retinal development, suggesting potential functions in visual development. Our data show that high expression levels of CRYAA and GJA8 in the retina after whisker deprivation rescue impaired visual development, which may provide a foundation for further research on the mechanisms of cross-modal plasticity and in particular, offer new insights into the mechanisms underlying tactile-visual cross-modal development.
一种感觉的剥夺可通过跨模态可塑性机制导致其他感觉的发育增强。为了研究在发育早期阶段触须触觉剥夺对视觉的影响,我们剪掉了幼鼠的双侧触须,发现它们的视力受损,但随后恢复到正常水平。我们的结果表明,PI3K/AKT/ERK信号通路的抑制在早期发育过程中导致短期视力受损,而视网膜中Crystallin Alpha A(CRYAA)和缝隙连接蛋白α8(GJA8)的高表达水平导致发育视力的恢复。有趣的是,对妊娠9 - 19周(GW)的人类胚胎视网膜单细胞测序结果的分析表明,CRYAA和GJA8在人类胚胎视网膜发育过程中表现出阶段特异性的峰值表达,提示其在视觉发育中的潜在功能。我们的数据表明,触须剥夺后视网膜中CRYAA和GJA8的高表达水平挽救了受损的视觉发育,这可能为进一步研究跨模态可塑性机制提供基础,特别是为触觉 - 视觉跨模态发育的潜在机制提供新的见解。