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C Scharf

Publications and source records attributed to C Scharf.

22 records · Page 2Linked to original sources

Thioredoxin is an essential protein induced by multiple stresses in Bacillus subtilis.

Thioredoxin, a small, ubiquitous protein which participates in redox reactions through the reversible oxidation of its active center dithiol to a disulfide, is an essential protein in Bacillus subtilis. A variety of stresses, including heat or salt stress or ethanol treatment, strongly enhanced the synthesis of thioredoxin in B. subtilis. The stress induction of the monocistronic trxA gene encoding thioredoxin occurs at two promoters. The general stress sigma factor, sigmaB, was required for the initiation of transcription at the upstream site, S(B), and the promoter preceding the downstream start site, S(A), was presumably recognized by the vegetative sigma factor, sigmaA. In contrast to the heat-inducible, sigmaA-dependent promoters preceding the chaperone-encoding operons groESL and dnaK, no CIRCE (for controlling inverted repeat of chaperone expression) was present in the vicinity of the start site, S(A). The induction patterns of the promoters differed, with the upstream promoter displaying the typical stress induction of sigmaB-dependent promoters. Transcription initiating at S(A), but not at S(B), was also induced after treatment with hydrogen peroxide or puromycin. Such a double control of stress induction at two different promoters seems to be typical of a subgroup of class III heat shock genes of B. subtilis, like clpC, and it either allows the cells to raise the level of the antioxidant thioredoxin after oxidative stress or allows stressed cells to accumulate thioredoxin. These increased levels of thioredoxin might help stressed B. subtilis cells to maintain the native and reduced state of cellular proteins.

Bacillus subtilis↗

An infertility primer for family therapists: I. Medical, social, and psychological dimensions.

A seemingly "self-evident truth" in most people's lives is that one day they will have children. This universal, biopsychosocial assumption goes unchallenged until a couple faces infertility. Although the effects of such a challenge are profound, infertility is often treated as a nonevent--both within our society as a whole, and within the field of family therapy in particular. To assist clinicians who work with this numerically increasing population, and the many others who have been affected by their encounter with infertility in the past, this article discusses the biological/medical, psychological, and social factors that shape the experience of infertility in our society.

Adaptation, Psychological↗

An infertility primer for family therapists: II. Working with couples who struggle with infertility.

The distress of infertility and its medical treatments are profound, and the effects reverberate in each partner, the couple dyad, and the couple's relationships with family, friends, and medical systems. Yet family therapists, like others in our society, are often uninformed or misinformed about the experience of infertility. While the legacies of infertility may be painful and enduring, they often remain unspoken, and hence may be overlooked in standard interviews. This article describes the experiences of couples struggling with infertility, most of whom have sought medical intervention, and it provides treatment interventions for guiding couples through this difficult and often uncharted terrain. Case vignettes derived from 2 years of this clinical research study are included.

Adaptation, Psychological↗

Alkaline phosphatase and protein kinase(s) activities in free cytoplasmic mRNPs from human term placenta.

Free mRNPs isolated from human term placental tissue were examined for protein kinase and phosphoprotein-phosphatase activities. Free mRNPs incubated with [gamma-32P]ATP in a protein kinase standard buffer show self-phosphorylation in the absence of exogenous substrates. Treatment of phosphorylated products with alkali showed a significant phosphorylation of tyrosine residues within the mRNP-proteins. An alkaline-phosphatase activity was found to be tightly associated with the mRNPs. Both heat stable and heat labile alkaline phosphatase activities were found in the mRNPs. Heat labile alkaline phosphatase is the major isoenzyme form of the mRNPs. The existence of both protein kinase(s) and alkaline phosphatase activities in placental free cytoplasmic mRNPs might suggest that a balance between phosphorylation, specifically on tyrosine residues, and dephosphorylation states of some of the mRNP-proteins is relevant for their physiological functions, and may therefore play a role in the regulation of mRNPs' metabolism and, consequently, in mRNA translation.

Adenosine Triphosphate↗