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991.
Pair housing of laboratory macaques is widely considered to lead to positive changes in well-being, yet the process of introduction is viewed as potentially stressful and risk-prone. Behavioral and physiological data were collected on eight adult male rhesus macaques before, during, and after the process of introduction, in order to measure the initial stress of introduction as well as long-term changes in well-being. Socially experienced subjects, all implanted with biotelemetry devices, were studied in five successive phases: baseline (singly housed), 1 day each of protected contact and full contact introduction, post-introduction (1-3 weeks after introduction), and settled pairs (> or =20 weeks after introduction). One hundred and seventy-six hours of behavioral data and 672 hr of heart rate data were analyzed. Fecal cortisol was also measured for the baseline, post-introduction, and settled pair phases. All introductions were successful and subjects showed no physiological or behavioral signs of stress, such as increased heart rate, abnormal behavior, or psychological indices of distress (depressive/anxiety-related behavior). Agonism was minimal throughout the introduction process and over the subsequent months; only one wound was incurred over the course of the study. Levels of abnormal behaviors, psychological indices of distress, locomotion, inactivity, and affiliation showed improvements within several weeks after introduction; these changes were still present 5-9 months later for the latter two categories. Heart rates during introduction fell significantly in the settled pair phase, and also varied predictably with time of day. Fecal cortisol levels were lower in settled pairs than in single housing. The fact that reductions in abnormal behavior did not persist over the long term may have been confounded by increasing duration of time spent caged. The results of this study may be of practical use for designing and monitoring social introductions and suggest that managers should not dismiss the feasibility of successful pairing of adult male rhesus macaques.  相似文献   
992.
993.
Lara Marks 《MABS-AUSTIN》2014,6(6):1362-1367
Today, when monoclonal antibodies (mAbs) have become one of the most important classes of therapeutic drugs, it is easy to forget how much they have transformed our healthcare in other ways. One of the first clinical areas, as this paper shows, where mAbs made their mark was in the field of blood typing. The adoption of mAbs for this purpose was done with little public fanfare or funding. Nonetheless, it radically transformed the accuracy and cost of blood typing and shifted the procedure away from a dependence on reagents made from human blood donated by volunteers. This paper argues that the development of mAbs as reagents for blood typing laid the foundation for the first large-scale production of mAbs thereby paving the way to the advent of mAb diagnostics and therapeutics.  相似文献   
994.
995.
The solubility properties and the number of disulfide groups per molecule of the crystal protein of Bacillus thuringiensis were shown to be similar to that of wool keratin. Dissolution of the crystals required scission of S-S bonds. This could be achieved at neutral pH without loss of toxicity. Molecular weight determinations with gel electrophoresis and ultracentrifugation indicated that the crystal subunit is a dimer. With the exception of the variety israelensis, all strains belonging to ten different subspecies revealed crystal subunits of the same molecular weight.  相似文献   
996.
997.
Immunoprecipitation and two-dimensional gel electrophoresis analysis of the glutamine synthetase (GS) polypeptides (α and β) during Phaseolus vulgaris root development shows that the α polypeptide is the main component of the enzyme in the embryo and in up to 5 day old roots. From 5 days on, the β polypeptide becomes the root predominant GS monomer. The α/β ratio of the in vitro translated GS polypeptides from the total polysomal RNA isolated at different root ages correlates with the α/β ratio observed in the root extracts. These results suggest that the two root GS polypeptides are encoded by different mRNA species in Phaseolus vulgaris.  相似文献   
998.
Patterns of DNA methylation (5-methylcytosine, 5mC) are rearranged during differentiation contributing to the regulation of cell type-specific gene expression. TET proteins oxidize 5mC to 5-hydroxymethylcytosine (5hmC), 5-formylcytosine (5fC), and 5-carboxylcytosine (5caC). Both 5fC and 5caC can be recognized and excised from DNA by thymine-DNA glycosylase (TDG) followed by the subsequent incorporation of unmodified cytosine into the abasic site via the base excision repair (BER) pathway. We previously demonstrated that 5caC accumulates during lineage specification of neural stem cells (NSCs) suggesting that such active demethylation pathway is operational in this system; however, it is still unknown if TDG/BER-dependent demethylation is used during other types of cellular differentiation. Here we analyze dynamics of the global levels of 5hmC and 5caC during differentiation of human pluripotent stem cells toward hepatic endoderm. We show that, similar to differentiating NSCs, 5caC transiently accumulates during hepatic differentiation. The levels of 5caC increase during specification of foregut, peak at the stage of hepatic endoderm commitment, and drop in differentiating cells concurrently with the onset of expression of α fetoprotein, a marker of committed hepatic progenitors. Moreover, we show that 5caC accumulates at promoter regions of several genes expressed during hepatic specification at differentiation stages corresponding to the beginning of their expression. Our data indicate that transient 5caC accumulation is a common feature of 2 different types (neural/glial and endoderm/hepatic) of cellular differentiation. This suggests that oxidation of 5mC may represent a general mechanism of rearrangement of 5mC profiles during lineage specification of somatic cells in mammals.  相似文献   
999.
Aedes aegypti larval hemolymph proteins were analyzed, and the major protein was characterized. The major protein, designated P1, is hexameric and is composed of subunits with molecular weights estimated to be 83,000. P1 is dissociated into its subunits when the pH is elevated from 7 to 9. This protein accumulates during the last larval instar and is not detected in adult mosquitoes. These characteristics, together with the high content of aromatic amino acids, include P1 in the arylphorin group of the insect storage proteins. Arch. Insect Biochem. Physiol. 34:191–201, 1997. © 1997 Wiley-Liss, Inc.  相似文献   
1000.
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