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1.
J Intellect Disabil Res ; 58(2): 99-109, 2014 Feb.
Article in English | MEDLINE | ID: mdl-23046106

ABSTRACT

BACKGROUND: Although staff attitudes towards individuals with intellectual disability (ID) whose behaviour challenges may be an important part of a positive support culture, very little research has focused on the development of training specifically designed to change staff attitudes. Positive contact is hypothesised to be an effective way to change attitudes towards stigmatised groups. METHODS: We designed and developed a half day training package about the experiences of individuals whose behaviour challenges - Who's Challenging Who (WCW). The WCW package was delivered according to a manual by a trainer with ID and a professional without disability. Seventy-six staff from a variety of organisations participated in one of 10 WCW training sessions and provided data on their attitudes and empathy towards individuals whose behaviour challenges prior to the WCW training and immediately at the end of training. Staff also completed a post-training evaluation questionnaire. RESULTS: A training package was successfully developed collaboratively with individuals whose behaviour challenges, and received very positive evaluations from staff participants. Short-term positive change was shown for empowerment and similarity attitudes, and staff empathy and self-efficacy. These outcomes were associated with small to moderate effect sizes. CONCLUSIONS: Meaningful short-term positive staff attitude changes were found and the WCW training model was shown to be feasible. More robust research designs are needed for future evaluation. In addition, the function of an attitude change intervention such as WCW within organisations' training strategies requires further development.


Subject(s)
Attitude of Health Personnel , Empathy/physiology , Health Personnel/education , Intellectual Disability/psychology , Program Development/methods , Adult , Female , Health Personnel/psychology , Humans , Male , Middle Aged , Program Evaluation
2.
J Cell Biochem ; 77(2): 277-87, 2000 Mar.
Article in English | MEDLINE | ID: mdl-10723093

ABSTRACT

Mammalian cells express several isoforms of beta-thymosin, a major actin monomer sequestering factor, including thymosins beta4, beta10, and beta15. Differences in actin-binding properties of different beta-thymosin family members have not been investigated. We find that thymosin beta15 binds actin with a 2.4-fold higher affinity than does thymosin beta4. Mutational analysis was performed to determine the amino acid differences in thymosin beta15 that specify its increased actin-affinity. Previous work with thymosin beta4 identified an alpha-helical domain, as well as a conserved central motif, as crucial for actin binding. Mutational analysis confirms that these domains are also vital for actin binding in thymosin beta15, but that differences in these domains are not responsible for the variation in actin-binding properties between thymosins beta4 and beta15. Truncation of the unique C-terminal residues in thymosin beta15 inhibits actin binding, suggesting that this domain also has an important role in mediating actin-binding affinity. Replacement of the 10 C-terminal amino acids of thymosin beta15 with those of thymosin beta4 did, however, reduce the actin-binding affinity of the hybrid relative to thymosin beta15. Similarly, replacement of the thymosin beta4 C-terminal amino acids with those of thymosin beta15 led to increased actin binding. We conclude that functional differences between closely related beta-thymosin family members are, in part, specified by the C-terminal variability between these isoforms. Such differences may have consequences for situations where beta-thymosins are differentially expressed as in embryonic development and in cancer.


Subject(s)
Actins/metabolism , Genetic Variation , Thymosin/genetics , Thymosin/metabolism , Amino Acid Sequence , Animals , Binding Sites/genetics , Cell Movement/physiology , Male , Molecular Sequence Data , Mutagenesis, Site-Directed , Protein Binding , Protein Isoforms/genetics , Protein Isoforms/metabolism , Rats , Recombinant Fusion Proteins/genetics , Recombinant Fusion Proteins/metabolism , Transfection , Tumor Cells, Cultured
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