Allan C Froehlich
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Explore the profile of Allan C Froehlich including associated specialties, affiliations and a list of published articles.
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8
Citations
548
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Recent Articles
1.
Henningsen B, Hon S, Covalla S, Sonu C, Argyros D, Barrett T, et al.
Appl Environ Microbiol
. 2015 Sep;
81(23):8108-17.
PMID: 26386051
Saccharomyces cerevisiae has recently been engineered to use acetate, a primary inhibitor in lignocellulosic hydrolysates, as a cosubstrate during anaerobic ethanolic fermentation. However, the original metabolic pathway devised to convert...
2.
Brown S, Klingeman D, Johnson C, Clum A, Aerts A, Salamov A, et al.
Genome Announc
. 2013 Jun;
1(3).
PMID: 23792743
Saccharomyces cerevisiae strain M3707 was isolated from a sample of commercial distillers yeast, and its genome sequence together with the genome sequences for the four derived haploid strains M3836, M3837,...
3.
Froehlich A, Chen C, Belden W, Madeti C, Roenneberg T, Merrow M, et al.
Eukaryot Cell
. 2010 Mar;
9(5):738-50.
PMID: 20305004
In plants and animals, cryptochromes function as either photoreceptors or circadian clock components. We have examined the cryptochrome from the filamentous fungus Neurospora crassa and demonstrate that Neurospora cry encodes...
4.
Belden W, Larrondo L, Froehlich A, Shi M, Chen C, Loros J, et al.
Genes Dev
. 2007 Jun;
21(12):1494-505.
PMID: 17575051
band, an allele enabling clear visualization of circadianly regulated spore formation (conidial banding), has remained an integral tool in the study of circadian rhythms for 40 years. bd was mapped...
5.
Froehlich A, Noh B, Vierstra R, Loros J, Dunlap J
Eukaryot Cell
. 2005 Dec;
4(12):2140-52.
PMID: 16339731
Phytochromes (Phys) comprise a superfamily of red-/far-red-light-sensing proteins. Whereas higher-plant Phys that control numerous growth and developmental processes have been well described, the biochemical characteristics and functions of the microbial...
6.
Froehlich A, Pregueiro A, Lee K, Denault D, Colot H, Nowrousian M, et al.
Novartis Found Symp
. 2004 Jan;
253:184-98.
PMID: 14712922
In Neurosporacrassa the FRQ/WC feedback loop has been shown to be central to the function of the circadian clock. Similar to other eukaryotic systems it is based on a transcription-translation...
7.
Froehlich A, Loros J, Dunlap J
Proc Natl Acad Sci U S A
. 2003 Apr;
100(10):5914-9.
PMID: 12714686
The biological clock of Neurospora crassa includes interconnected transcriptional and translational feedback loops that cause both the transcript and protein encoded by the frequency gene (frq) to undergo the robust...
8.
Froehlich A, Liu Y, Loros J, Dunlap J
Science
. 2002 Jul;
297(5582):815-9.
PMID: 12098706
In the fungus Neurospora crassa, the blue light photoreceptor(s) and signaling pathway(s) have not been identified. We examined light signaling by exploiting the light sensitivity of the Neurospora biological clock,...