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Depressed nNOS expression during spine transition in the developing hippocampus of FMR1 KO mice

Nitric oxide (NO), synthesized as needed by NO synthase (NOS), is involved in spinogenesis and synaptogenesis. Immature spine morphology is characteristic of fragile X syndrome (FXS). The objective of this research was to investigate and compare changes of postnatal neuronal NOS (nNOS) expression in...

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Autores principales: Xu, Qin, Zhu, Zhiwei, Xu, Jialu, Gu, Weizhong, Zhao, Zhengyan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sociedade Brasileira de Medicina Tropical 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3854223/
https://www.ncbi.nlm.nih.gov/pubmed/23033162
http://dx.doi.org/10.1590/S0100-879X2012007500158
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author Xu, Qin
Zhu, Zhiwei
Xu, Jialu
Gu, Weizhong
Zhao, Zhengyan
author_facet Xu, Qin
Zhu, Zhiwei
Xu, Jialu
Gu, Weizhong
Zhao, Zhengyan
author_sort Xu, Qin
collection PubMed
description Nitric oxide (NO), synthesized as needed by NO synthase (NOS), is involved in spinogenesis and synaptogenesis. Immature spine morphology is characteristic of fragile X syndrome (FXS). The objective of this research was to investigate and compare changes of postnatal neuronal NOS (nNOS) expression in the hippocampus of male fragile X mental retardation 1 gene knockout mice (FMR1 KO mice, the animal model of FXS) and male wild-type mice (WT) at postnatal day 7 (P7), P14, P21, and P28. nNOS mRNA levels were analyzed by real-time quantitative PCR (N = 4-7) and nNOS protein was estimated by Western blot (N = 3) and immunohistochemistry (N = 1). In the PCR assessment, primers 5′-GTGGCCATCGTGTCCTACCATAC-3′ and 5′-GTTTCGAGGCAGGTGGAAGCTA-3′ were used for the detection of nNOS and primers 5′-CCGTTTCTCCTGGCTCAGTTTA-3′ and 5′-CCCCAATACCACATCATCCAT-3′ were used for the detection of β-actin. Compared to the WT group, nNOS mRNA expression was significantly decreased in FMR1 KO mice at P21 (KO: 0.2857 ± 0.0150, WT: 0.5646 ± 0.0657; P < 0.05). Consistently, nNOS immunoreactivity also revealed reduced staining intensity at P21 in the FMR1 KO group. Western blot analysis validated the immunostaining results by demonstrating a significant reduction in nNOS protein levels in the FMR1 KO group compared to the WT group at P21 (KO: 0.3015 ± 0.0897, WT: 1.7542 ± 0.5455; P < 0.05). These results suggest that nNOS was involved in the postnatal development of the hippocampus in FXS and impaired NO production may retard spine maturation in FXS.
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spelling pubmed-38542232013-12-16 Depressed nNOS expression during spine transition in the developing hippocampus of FMR1 KO mice Xu, Qin Zhu, Zhiwei Xu, Jialu Gu, Weizhong Zhao, Zhengyan Braz J Med Biol Res Short Communication Nitric oxide (NO), synthesized as needed by NO synthase (NOS), is involved in spinogenesis and synaptogenesis. Immature spine morphology is characteristic of fragile X syndrome (FXS). The objective of this research was to investigate and compare changes of postnatal neuronal NOS (nNOS) expression in the hippocampus of male fragile X mental retardation 1 gene knockout mice (FMR1 KO mice, the animal model of FXS) and male wild-type mice (WT) at postnatal day 7 (P7), P14, P21, and P28. nNOS mRNA levels were analyzed by real-time quantitative PCR (N = 4-7) and nNOS protein was estimated by Western blot (N = 3) and immunohistochemistry (N = 1). In the PCR assessment, primers 5′-GTGGCCATCGTGTCCTACCATAC-3′ and 5′-GTTTCGAGGCAGGTGGAAGCTA-3′ were used for the detection of nNOS and primers 5′-CCGTTTCTCCTGGCTCAGTTTA-3′ and 5′-CCCCAATACCACATCATCCAT-3′ were used for the detection of β-actin. Compared to the WT group, nNOS mRNA expression was significantly decreased in FMR1 KO mice at P21 (KO: 0.2857 ± 0.0150, WT: 0.5646 ± 0.0657; P < 0.05). Consistently, nNOS immunoreactivity also revealed reduced staining intensity at P21 in the FMR1 KO group. Western blot analysis validated the immunostaining results by demonstrating a significant reduction in nNOS protein levels in the FMR1 KO group compared to the WT group at P21 (KO: 0.3015 ± 0.0897, WT: 1.7542 ± 0.5455; P < 0.05). These results suggest that nNOS was involved in the postnatal development of the hippocampus in FXS and impaired NO production may retard spine maturation in FXS. Sociedade Brasileira de Medicina Tropical 2012-10-05 /pmc/articles/PMC3854223/ /pubmed/23033162 http://dx.doi.org/10.1590/S0100-879X2012007500158 Text en http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License, which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Short Communication
Xu, Qin
Zhu, Zhiwei
Xu, Jialu
Gu, Weizhong
Zhao, Zhengyan
Depressed nNOS expression during spine transition in the developing hippocampus of FMR1 KO mice
title Depressed nNOS expression during spine transition in the developing hippocampus of FMR1 KO mice
title_full Depressed nNOS expression during spine transition in the developing hippocampus of FMR1 KO mice
title_fullStr Depressed nNOS expression during spine transition in the developing hippocampus of FMR1 KO mice
title_full_unstemmed Depressed nNOS expression during spine transition in the developing hippocampus of FMR1 KO mice
title_short Depressed nNOS expression during spine transition in the developing hippocampus of FMR1 KO mice
title_sort depressed nnos expression during spine transition in the developing hippocampus of fmr1 ko mice
topic Short Communication
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3854223/
https://www.ncbi.nlm.nih.gov/pubmed/23033162
http://dx.doi.org/10.1590/S0100-879X2012007500158
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