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Bethanny Danskin Daniel Denman Matthew Valley Douglas Ollerenshaw Derric Williams Peter Groblewski Clay Reid Shawn Olsen Jack Waters 《PloS one》2015,10(12)
Optogenetic techniques are used widely to perturb and interrogate neural circuits in behaving animals, but illumination can have additional effects, such as the activation of endogenous opsins in the retina. We found that illumination, delivered deep into the brain via an optical fiber, evoked a behavioral artifact in mice performing a visually guided discrimination task. Compared with blue (473 nm) and yellow (589 nm) illumination, red (640 nm) illumination evoked a greater behavioral artifact and more activity in the retina, the latter measured with electrical recordings. In the mouse, the sensitivity of retinal opsins declines steeply with wavelength across the visible spectrum, but propagation of light through brain tissue increases with wavelength. Our results suggest that poor retinal sensitivity to red light was overcome by relatively robust propagation of red light through brain tissue and stronger illumination of the retina by red than by blue or yellow light. Light adaptation of the retina, via an external source of illumination, suppressed retinal activation and the behavioral artifact without otherwise impacting behavioral performance. In summary, long wavelength optogenetic stimuli are particularly prone to evoke behavioral artifacts via activation of retinal opsins in the mouse, but light adaptation of the retina can provide a simple and effective mitigation of the artifact. 相似文献
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P. E. Reid D. A. Owen W. L. Dunn C. W. Ramey D. A. Lazosky M. G. Clay 《The Histochemical journal》1985,17(2):171-181
Summary Histochemical, chemical and histological studies were performed on 26 specimens of human colonic tumours and 62 specimens of mucosa taken at distances of 0.5–5.0 cm from the tumour. The tumour glycoproteins were divided almost equally between three anionic types, sulphomucin, sialomucin and mixed sialomucin and sulphomucin. All showed a reduction in staining for side chainO-acylated sialic acid. In 56% of the tumours, this was accompanied by loss of glycoprotein while, in 44%, abundant mucin was still present.Histochemical examination of the mucosal specimens indicated that in 24.2% the side chainO-acylated sialic acids did not differ from normal. In 41.9% there was a focal change and in 33.9% there was a generalized field reduction in the proportion of side chainO-acyl sialic acids. The latter were subdivided into moderate and severe. Chemical analyses correlated well with the histochemical classification of the mucosal specimens and showed that, on average, the classifications focal and severe field change were not due to sampling error. Forty-five per cent of the cases showed only focal change and 40% only field change. Mucosal specimens associated with 60% of the moderately differentiated tumours showed only focal change while those associated with 75% of well-differentiated tumours showed only field change. Abnormal patterns of staining for side chainO-acylated sialic acids (a) were largely independent of the distance from the tumour, (b) occurred in the presence of a normal pattern of staining for sialomucins and sulphomucins and (c) were associated with 61.4% of the specimens that showed no discernible evidence of histological abnormality. In contrast, only one specimen showed evidence of histological change without a corresponding change inO-acylated sialic acids. The data suggest that abnormal patterns of staining forO-acylated sialic acids may represent premalignant change but their precise significance and specificity requires further studies of non-neoplastic diseases of the colon. 相似文献
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J. C. Clay 《BMJ (Clinical research ed.)》1989,299(6696):409-410
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Keith L. Clay Robert C. Murphy 《Biochemical and biophysical research communications》1980,95(3):1205-1210
L-amino acids containing oxygen-18 at the carboxyl moiety have been found to undergo rapid loss of the stable isotope label through exchange with water in the presence of erythrocytes. This back exchange was found to be temperature dependent, stereo-specific, and dependent on intact cells. The results suggest that an erythrocyte system catalyzes the formation of an intermediate which adds water to the labeled acid. This system has many characteristics similar to amino acid transport. 相似文献
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P. E. Reid D. A. Owen C. W. Ramey W. L. Dunn E. A. Jones D. A. Lazosky E. Allen C. M. Park M. G. Clay 《The Histochemical journal》1985,17(8):891-903
Summary A differential diagnostic scheme is described for the division of colonic epithelial glycoproteins into eleven histochemically distinct classes. The scheme depends upon the use of seven histochemical techniques which, collectively, permit the differential staining ofO-sulphate ester, sialic acid and its side chainO-acyl variants and vicinal diols located on carbohydrate residues other than sialic acids. Elements of the scheme also provide a general approach to the classification of epithelial glycoproteins in anatomic sites other than the colon.Application of the scheme permitted the classification of the epithelial glycoproteins in the mucosa 0.5–5.0 cm from human colonic tumours and provided direct confirmation of previous observations that changes from normal in the relative proportions of either side chainO-acylated sialic acids or sialic acids andO-sulphate esters can occur independently of one another. 相似文献
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Shu-Lin Chang Yi-Ming Chiang Hsu-Hua Yeh Tung-Kung Wu Clay C.C. Wang 《Bioorganic & medicinal chemistry letters》2013,23(7):2155-2157
The gliotoxin, a member of the epipolythiodioxopiperazine (ETP), has received considerable attention from the scientific community for its wide range of biological activity. Despite the identification of gliotoxin cluster, however, the sequence of steps in the gliotoxin biosynthesis has remained elusive. As an alternative to the gene knock-out and biochemical approaches used so far, here we report using a heterologous expression approach to determine the sequence of the early steps of gliotoxin biosynthesis in Aspergillus nidulans. We identified the GliC, a monooxygenases that involved in the second step of gliotoxin biosynthesis pathway through the catalyzing the hydroxylation at the α-position of l-Phe. 相似文献