Literature DB >> 18171930

Mechanisms of compartmentalized expression of Mrg class G-protein-coupled sensory receptors.

Yang Liu1, Fu-Chia Yang, Tsukasa Okuda, Xinzhong Dong, Mark J Zylka, Chih-Li Chen, David J Anderson, Rohini Kuner, Qiufu Ma.   

Abstract

Mrg class G-protein-coupled receptors (GPCRs) are expressed exclusively in sensory neurons in the trigeminal and dorsal root ganglia. Pharmacological activation of Mrg proteins is capable of modulating sensory neuron activities and elicits nociceptive effects. In this study, we illustrate a control mechanism that allows the Runx1 runt domain transcription factor to generate compartmentalized expression of these sensory GPCRs. Expression of MrgA, MrgB, and MrgC subclasses is confined to an "A/B/C" neuronal compartment that expresses Runx1 transiently (or does not express Runx1), whereas MrgD expression is restricted to a "D" compartment with persistent Runx1 expression. Runx1 is initially required for the expression of all Mrg genes. However, during late development Runx1 becomes a repressor for MrgA/B/C genes. As a result, MrgA/B/C expression persists only in the Runx1- "A/B/C" compartment. In delta446 mice, in which Runx1 lacks the C-terminal repression domain, expression of MrgA/B/C genes is dramatically expanded into the Runx1+ "D" compartment. MrgD expression, however, is resistant to Runx1-mediated repression in the "D" compartment. Therefore, the creation of Runx1+ and Runx1- compartments, in conjunction with different responses of Mrg genes to Runx1-mediated repression, results in the compartmentalized expression of MrgA/B/C versus MrgD genes. Within the MrgA/B/C compartment, MrgB4-expressing neurons innervate exclusively the hairy skin. Here we found that Smad4, a downstream component of bone morphological protein-mediated signaling, is required selectively for the expression of MrgB4. Our study suggests a new line of evidence that specification of sensory subtypes is established progressively during perinatal and postnatal development.

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Year:  2008        PMID: 18171930      PMCID: PMC6671167          DOI: 10.1523/JNEUROSCI.4472-07.2008

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  34 in total

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Journal:  J Neurosci       Date:  2012-07-11       Impact factor: 6.167

Review 3.  Labeled lines meet and talk: population coding of somatic sensations.

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4.  VGLUT2-dependent glutamate release from nociceptors is required to sense pain and suppress itch.

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5.  Incoherent feed-forward regulatory loops control segregation of C-mechanoreceptors, nociceptors, and pruriceptors.

Authors:  Shan Lou; Xiaoxin Pan; Tianwen Huang; Bo Duan; Fu-Chia Yang; Juan Yang; Mulin Xiong; Yang Liu; Qiufu Ma
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Authors:  Qin Liu; Zongxiang Tang; Lenka Surdenikova; Seungil Kim; Kush N Patel; Andrew Kim; Fei Ru; Yun Guan; Hao-Jui Weng; Yixun Geng; Bradley J Undem; Marian Kollarik; Zhou-Feng Chen; David J Anderson; Xinzhong Dong
Journal:  Cell       Date:  2009-12-10       Impact factor: 41.582

9.  Enhanced excitability of MRGPRA3- and MRGPRD-positive nociceptors in a model of inflammatory itch and pain.

Authors:  Lintao Qu; Ni Fan; Chao Ma; Tao Wang; Liang Han; Kai Fu; Yingdi Wang; Steven G Shimada; Xinzhong Dong; Robert H LaMotte
Journal:  Brain       Date:  2014-02-18       Impact factor: 13.501

10.  Regulation of boundary cap neural crest stem cell differentiation after transplantation.

Authors:  Hakan Aldskogius; Christian Berens; Nadezda Kanaykina; Anna Liakhovitskaia; Alexander Medvinsky; Martin Sandelin; Silke Schreiner; Michael Wegner; Jens Hjerling-Leffler; Elena N Kozlova
Journal:  Stem Cells       Date:  2009-07       Impact factor: 6.277

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