S G Webster
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Explore the profile of S G Webster including associated specialties, affiliations and a list of published articles.
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44
Citations
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Recent Articles
1.
Webster S, Dircksen H
Biol Bull
. 2018 Jan;
180(1):65-71.
PMID: 29303629
Immunocytochemical investigations of the eyestalk of Carcinus maenas zoeal larval stages, using an antiserum directed against putative Carcinus molt-inhibiting hormone (MIH), revealed immunopositive neuronal structures. These structures included perikarya associated...
2.
Webster S
Biol Bull
. 2017 Mar;
195(3):282-289.
PMID: 28297614
Antisera raised against neuropeptides from decapod crustaceans were used to investigate whether balanomorph barnacles produce peptides analogous to those identified in some decapods. The distribution and structure of immunoreactive neurons...
3.
Chung J, Webster S
Arch Insect Biochem Physiol
. 2008 May;
68(3):171-80.
PMID: 18481304
Angiotensin-converting enzyme-like enzyme activity (ACELA) was found in Carcinus maenas using reverse phase high performance liquid chromatography (RP-HPLC) analysis of degradation kinetics of a synthetic substrate (Hippuryl-histidyl-leucine) and a specific...
4.
Chung J, Wilcockson D, Zmora N, Zohar Y, Dircksen H, Webster S
J Exp Biol
. 2006 Sep;
209(Pt 19):3862-72.
PMID: 16985202
Full-length cDNAs encoding crustacean cardioactive peptide (CCAP) were isolated from several decapod (brachyuran and astacuran) crustaceans: the blue crab Callinectes sapidus, green shore crab Carcinus maenas, European lobster Homarus gamarus...
5.
Chung J, Webster S
Gen Comp Endocrinol
. 2006 Mar;
147(2):206-13.
PMID: 16504184
To determine the possible involvement of crustacean hyperglycemic hormone (CHH) in osmoregulation in crustaceans, ligand binding and second messenger assays were performed on gills and hindgut preparations of the green...
6.
Chung J, Webster S
Endocrinology
. 2005 Sep;
146(12):5545-51.
PMID: 16150903
Very little is known regarding the release patterns or circulating titers of neuropeptides in crustaceans, in particular those concerned with regulation of molting hormone (ecdysteroid) synthesis, molt-inhibiting hormone (MIH), and...
7.
Lu W, Wainwright G, Olohan L, Webster S, Rees H, Turner P
Gene
. 2001 Nov;
278(1-2):149-59.
PMID: 11707332
Synthesis of ecdysteroids (molting hormones) by crustacean Y-organs is regulated by a neuropeptide, molt-inhibiting hormone (MIH), produced in eyestalk neural ganglia. We report here the molecular cloning of a cDNA...
8.
Dircksen H, Bocking D, Heyn U, Mandel C, Chung J, Baggerman G, et al.
Biochem J
. 2001 May;
356(Pt 1):159-70.
PMID: 11336648
About 24 intrinsic neurosecretory neurons within the pericardial organs (POs) of the crab Carcinus maenas produce a novel crustacean hyperglycaemic hormone (CHH)-like peptide (PO-CHH) and two CHH-precursor-related peptides (PO-CPRP I...
9.
Coast G, Webster S, Schegg K, Tobe S, Schooley D
J Exp Biol
. 2001 Apr;
204(Pt 10):1795-804.
PMID: 11316500
The Drosophila melanogaster homologue of an insect calcitonin-like diuretic hormone was identified in a BLAST search of the Drosophila genome database. The predicted 31-residue amidated peptide (D. melanogaster DH31; Drome-DH31)...
10.
Lu W, Wainwright G, Webster S, Rees H, Turner P
Gene
. 2000 Aug;
253(2):197-207.
PMID: 10940557
Development and reproduction of crustaceans is regulated by a combination of neuropeptide hormones, ecdysteroids (moulting hormones) and the isoprenoid, methyl farnesoate (MF), the unepoxidised analogue of insect juvenile hormone-III (JH-III)....