Matches in SemOpenAlex for { <https://semopenalex.org/work/W2007032188> ?p ?o ?g. }
- W2007032188 endingPage "15622" @default.
- W2007032188 startingPage "15615" @default.
- W2007032188 abstract "To examine the molecular basis controlling neuronal differentiation, subtraction library construction and differential screening were used to identify cDNAs whose mRNA levels are regulated in mouse NS20Y cells by dibutyryl cyclic AMP treatment. One of them, N27K, whose mRNA increases transiently during both neuronal differentiation in NS20Y cells and development in mouse brain. The deduced amino acid sequence of N27K comprises 212 amino acid residues and is a novel form of a precursor protein for a new neuropeptide nociceptin/orphanin FQ, which we independently cloned as N23K. That is, the putative protein encoded by N27K is 25 amino acids longer than that encoded by N23K. Using an antibody against a C-terminal peptide of the N27K protein that recognizes a 27-kDa protein in Western blot analysis, a punctate structure in the perinuclear region and areas near the tip of neurites is visualized in neurally differentiating NS20Y cells. The time of maximal expression correlates with periods of neurite extension, and expression decreases as the neuritic network develops. Immunohistochemistry of tissue sections of the mouse central nervous system revealed that reactivity for the anti-N27K protein antibody can detected in early generated neurons at embryonic day 14, in virtually all immature neurons at postnatal day 1, and in subsets of neurons of discrete brain regions such as the hypothalamus and spinal cord in adults. This remarkable redistribution suggests that N27K may be involved in a process in neurite outgrowth and nervous system development. To examine the molecular basis controlling neuronal differentiation, subtraction library construction and differential screening were used to identify cDNAs whose mRNA levels are regulated in mouse NS20Y cells by dibutyryl cyclic AMP treatment. One of them, N27K, whose mRNA increases transiently during both neuronal differentiation in NS20Y cells and development in mouse brain. The deduced amino acid sequence of N27K comprises 212 amino acid residues and is a novel form of a precursor protein for a new neuropeptide nociceptin/orphanin FQ, which we independently cloned as N23K. That is, the putative protein encoded by N27K is 25 amino acids longer than that encoded by N23K. Using an antibody against a C-terminal peptide of the N27K protein that recognizes a 27-kDa protein in Western blot analysis, a punctate structure in the perinuclear region and areas near the tip of neurites is visualized in neurally differentiating NS20Y cells. The time of maximal expression correlates with periods of neurite extension, and expression decreases as the neuritic network develops. Immunohistochemistry of tissue sections of the mouse central nervous system revealed that reactivity for the anti-N27K protein antibody can detected in early generated neurons at embryonic day 14, in virtually all immature neurons at postnatal day 1, and in subsets of neurons of discrete brain regions such as the hypothalamus and spinal cord in adults. This remarkable redistribution suggests that N27K may be involved in a process in neurite outgrowth and nervous system development." @default.
- W2007032188 created "2016-06-24" @default.
- W2007032188 creator A5004207516 @default.
- W2007032188 creator A5008088538 @default.
- W2007032188 creator A5023317571 @default.
- W2007032188 creator A5031696916 @default.
- W2007032188 creator A5049730713 @default.
- W2007032188 creator A5068404526 @default.
- W2007032188 creator A5071810732 @default.
- W2007032188 date "1996-06-01" @default.
- W2007032188 modified "2023-09-27" @default.
- W2007032188 title "Molecular Cloning and Characterization of a Novel Form of Neuropeptide Gene as a Developmentally Regulated Molecule" @default.
- W2007032188 cites W130172257 @default.
- W2007032188 cites W1490238718 @default.
- W2007032188 cites W1507957953 @default.
- W2007032188 cites W1546709430 @default.
- W2007032188 cites W1598044684 @default.
- W2007032188 cites W1958560494 @default.
- W2007032188 cites W1975304761 @default.
- W2007032188 cites W1977157092 @default.
- W2007032188 cites W1977461780 @default.
- W2007032188 cites W1979505297 @default.
- W2007032188 cites W1981800865 @default.
- W2007032188 cites W1988185716 @default.
- W2007032188 cites W1989194294 @default.
- W2007032188 cites W1991377640 @default.
- W2007032188 cites W1992785510 @default.
- W2007032188 cites W2002923995 @default.
- W2007032188 cites W2003206650 @default.
- W2007032188 cites W2004291149 @default.
- W2007032188 cites W2009327298 @default.
- W2007032188 cites W2010556990 @default.
- W2007032188 cites W2015292449 @default.
- W2007032188 cites W2016562510 @default.
- W2007032188 cites W2017670145 @default.
- W2007032188 cites W2018999287 @default.
- W2007032188 cites W2022919550 @default.
- W2007032188 cites W2024878482 @default.
- W2007032188 cites W2030381973 @default.
- W2007032188 cites W2039628680 @default.
- W2007032188 cites W2043127059 @default.
- W2007032188 cites W2049455190 @default.
- W2007032188 cites W2056955251 @default.
- W2007032188 cites W2062898068 @default.
- W2007032188 cites W2065905166 @default.
- W2007032188 cites W2066624199 @default.
- W2007032188 cites W2067431787 @default.
- W2007032188 cites W2071635201 @default.
- W2007032188 cites W2076716879 @default.
- W2007032188 cites W2077530921 @default.
- W2007032188 cites W2081846788 @default.
- W2007032188 cites W2086004438 @default.
- W2007032188 cites W2088994161 @default.
- W2007032188 cites W2090799075 @default.
- W2007032188 cites W2091021971 @default.
- W2007032188 cites W2092175923 @default.
- W2007032188 cites W2092526636 @default.
- W2007032188 cites W2097128116 @default.
- W2007032188 cites W2136290004 @default.
- W2007032188 cites W2138270253 @default.
- W2007032188 cites W21386982 @default.
- W2007032188 cites W2158499654 @default.
- W2007032188 cites W2161400325 @default.
- W2007032188 cites W2278851972 @default.
- W2007032188 doi "https://doi.org/10.1074/jbc.271.26.15615" @default.
- W2007032188 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/8663129" @default.
- W2007032188 hasPublicationYear "1996" @default.
- W2007032188 type Work @default.
- W2007032188 sameAs 2007032188 @default.
- W2007032188 citedByCount "56" @default.
- W2007032188 countsByYear W20070321882012 @default.
- W2007032188 countsByYear W20070321882015 @default.
- W2007032188 countsByYear W20070321882016 @default.
- W2007032188 countsByYear W20070321882018 @default.
- W2007032188 crossrefType "journal-article" @default.
- W2007032188 hasAuthorship W2007032188A5004207516 @default.
- W2007032188 hasAuthorship W2007032188A5008088538 @default.
- W2007032188 hasAuthorship W2007032188A5023317571 @default.
- W2007032188 hasAuthorship W2007032188A5031696916 @default.
- W2007032188 hasAuthorship W2007032188A5049730713 @default.
- W2007032188 hasAuthorship W2007032188A5068404526 @default.
- W2007032188 hasAuthorship W2007032188A5071810732 @default.
- W2007032188 hasBestOaLocation W20070321881 @default.
- W2007032188 hasConcept C104317684 @default.
- W2007032188 hasConcept C105580179 @default.
- W2007032188 hasConcept C113246987 @default.
- W2007032188 hasConcept C118303440 @default.
- W2007032188 hasConcept C153911025 @default.
- W2007032188 hasConcept C170493617 @default.
- W2007032188 hasConcept C202751555 @default.
- W2007032188 hasConcept C515207424 @default.
- W2007032188 hasConcept C55493867 @default.
- W2007032188 hasConcept C81439078 @default.
- W2007032188 hasConcept C86803240 @default.
- W2007032188 hasConcept C95444343 @default.
- W2007032188 hasConceptScore W2007032188C104317684 @default.
- W2007032188 hasConceptScore W2007032188C105580179 @default.
- W2007032188 hasConceptScore W2007032188C113246987 @default.