نتایج جستجو برای: fanleaf degeneration

تعداد نتایج: 62267  

Journal: :The Journal of general virology 1993
M Viry M A Serghini F Hans C Ritzenthaler M Pinck L Pinck

Transcripts were produced in vitro by run-off transcription from full-length cDNA of RNA1 and RNA2 of grapevine fanleaf nepovirus (GFLV; isolate F13) cloned downstream from a bacteriophage RNA polymerase promoter. These transcripts, which possess a 5' terminal cap structure and a non-viral G residue instead of the naturally occurring genome-linked viral protein (VPg), are infectious to Chenopod...

Journal: :The Journal of general virology 1991
C Ritzenthaler M Viry M Pinck R Margis M Fuchs L Pinck

The nucleotide sequence of the genomic RNA1, 7342 nucleotides (nt) of grapevine fanleaf virus strain F13 (GFLV-F13) has been determined from cDNA clones. The complete sequence contained only one long open reading frame (ORF) of 6852 nucleotides extending from nucleotide 243 to 7101. The putative polyprotein encoded by this ORF is 2284 amino acids in length with an Mr of 253K. The location of ge...

Journal: :Nature Reviews Molecular Cell Biology 2003

Journal: :Proceedings of the Royal Society of Medicine 1950

Journal: :Journal of the American Medical Association 1912

2011
Pradeep Suri Asako Miyakoshi David J Hunter Jeffrey G Jarvik James Rainville Ali Guermazi Ling Li Jeffrey N Katz

BACKGROUND Prior studies that have concluded that disk degeneration uniformly precedes facet degeneration have been based on convenience samples of individuals with low back pain. We conducted a study to examine whether the view that spinal degeneration begins with the anterior spinal structures is supported by epidemiologic observations of degeneration in a community-based population. METHOD...

Journal: :Neuron 2006
Eric D. Hoopfer Todd McLaughlin Ryan J. Watts Oren Schuldiner Dennis D.M. O'Leary Liqun Luo

Axon pruning by degeneration remodels exuberant axonal connections and is widely required for the development of proper circuitry in the nervous system from insects to mammals. Developmental axon degeneration morphologically resembles injury-induced Wallerian degeneration, suggesting similar underlying mechanisms. As previously reported for mice, we show that Wlds protein substantially delays W...

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