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Association of protein distribution and gene expression revealed by positron emission tomography and postmortem gene expression in the dopaminergic system of the human brain.

Authors :
Yamamoto, Yasuharu
Takahata, Keisuke
Kubota, Manabu
Takeuchi, Hiroyoshi
Moriguchi, Sho
Sasaki, Takeshi
Seki, Chie
Endo, Hironobu
Matsuoka, Kiwamu
Tagai, Kenji
Kimura, Yasuyuki
Kurose, Shin
Mimura, Masaru
Kawamura, Kazunori
Zhang, Ming-Rong
Higuchi, Makoto
Source :
European Journal of Nuclear Medicine & Molecular Imaging; Nov2023, Vol. 50 Issue 13, p3928-3936, 9p
Publication Year :
2023

Abstract

Purpose: The topological distribution of dopamine-related proteins is determined by gene transcription and subsequent regulations. Recent research strategies integrating positron emission tomography with a transcriptome atlas have opened new opportunities to understand the influence of regulation after transcription on protein distribution. Previous studies have reported that messenger (m)-RNA expression levels spatially correlate with the density maps of serotonin receptors but not with those of transporters. This discrepancy may be due to differences in regulation after transcription between presynaptic and postsynaptic proteins, which have not been studied in the dopaminergic system. Here, we focused on dopamine D1 and D2/D3 receptors and dopamine transporters and investigated their region-wise relationship between mRNA expression and protein distribution. Methods: We examined the region-wise correlation between regional binding potentials of the target region relative to that of non-displaceable tissue (BP<subscript>ND</subscript>) values of <superscript>11</superscript>C-SCH-23390 and mRNA expression levels of dopamine D1 receptors (D1R); regional BP<subscript>ND</subscript> values of <superscript>11</superscript>C-FLB-457 and mRNA expression levels of dopamine D2/D3 receptors (D2/D3R); and regional total distribution volume (V<subscript>T</subscript>) values of <superscript>18</superscript>F-FE-PE2I and mRNA expression levels of dopamine transporters (DAT) using Spearman's rank correlation. Results: We found significant positive correlations between regional BP<subscript>ND</subscript> values of <superscript>11</superscript>C-SCH-23390 and the mRNA expression levels of D1R (r = 0.769, p = 0.0021). Similar to D1R, regional BP<subscript>ND</subscript> values of <superscript>11</superscript>C-FLB-457 positively correlated with the mRNA expression levels of D2R (r = 0.809, p = 0.0151) but not with those of D3R (r = 0.413, p = 0.3095). In contrast to D1R and D2R, no significant correlation between V<subscript>T</subscript> values of <superscript>18</superscript>F-FE-PE2I and mRNA expression levels of DAT was observed (r = -0.5934, p = 0.140). Conclusion: We found a region-wise correlation between the mRNA expression levels of dopamine D1 and D2 receptors and their respective protein distributions. However, we found no region-wise correlation between the mRNA expression levels of dopamine transporters and their protein distributions, indicating different regulatory mechanisms for the localization of pre- and postsynaptic proteins. These results provide a broader understanding of the application of the transcriptome atlas to neuroimaging studies of the dopaminergic nervous system. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16197070
Volume :
50
Issue :
13
Database :
Complementary Index
Journal :
European Journal of Nuclear Medicine & Molecular Imaging
Publication Type :
Academic Journal
Accession number :
173273491
Full Text :
https://doi.org/10.1007/s00259-023-06390-2