Comparative proteomic analysis of kidney development-related proteins in the pig
IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL
Authors: Jeon, Young-Joo; Kim, Jumi; Chae, Jung-Il
Abstract
The development of the kidney is a complex process that serves as a model organ system for understanding many basic developmental mechanisms, and the pig kidney provides a useful and relevant model of kidney development and function. However, the molecular cascades involved in kidney development during embryonic development in the pig have not been elucidated fully. To better understand the molecular events associated with kidney development, we evaluated changes in gene expression during kidney development (days E40, E70, and E93) and compared these expressions with adults using two-dimensional gel electrophoresis. The functionally regulated proteins were identified by comparing differentially expressed proteins in embryonic kidneys vs. adult kidney. In addition, a representative set of the proteins was subjected to liquid chromatography tandem mass spectrometry analysis. Furthermore, the identified proteins were categorized according to their biological processes and molecular functions. Interestingly, 10 of the 25 proteins identified were apoptosis and actin cytoskeleton-related proteins, such as GRP75, alpha-fetoprotein, ANXA2, ANXA4, DDAH2, DJ-1, SOD2, cofilin1, vil1, and calbindin1. Based on these results, the proteomic approach was applied to identify specific protein expression changes in kidney tissues during development, and the expressional changes of these embryonic kidney proteins were found to be closely associated with the regulation of kidney development.
Impact of genomic stability on protein expression in endometrioid endometrial cancer
BRITISH JOURNAL OF CANCER
Authors: Lomnytska, M. I.; Becker, S.; Gemoll, T.; Lundgren, C.; Habermann, J.; Olsson, A.; Bodin, I.; Engstrom, U.; Hellman, U.; Hellman, K.; Hellstrom, A-C; Andersson, S.; Mints, M.; Auer, G.
Abstract
BACKGROUND: Genomic stability is one of the crucial prognostic factors for patients with endometrioid endometrial cancer (EEC). The impact of genomic stability on the tumour tissue proteome of EEC is not yet well established. METHODS: Tissue lysates of EEC, squamous cervical cancer (SCC), normal endometrium and squamous cervical epithelium were subjected to two-dimensional (2D) gel electrophoresis and identification of proteins by MALDI TOF MS. Expression of selected proteins was analysed in independent samples by immunohistochemistry. RESULTS: Diploid and aneuploid genomically unstable EEC displayed similar patterns of protein expression. This was in contrast to diploid stable EEC, which displayed a protein expression profile similar to normal endometrium. Approximately 10% of the differentially expressed proteins in EEC were specific for this type of cancer with differential expression of other proteins observed in other types of malignancy (e.g., SCC). Selected proteins differentially expressed in 2D gels of EEC were further analysed in an EEC precursor lesion, that is, atypical hyperplasia of endometrium, and showed increased expression of CLIC1, EIF4A1 and PRDX6 and decreased expression of ENO1, ANXA4, EMD and Ku70. CONCLUSION: Protein expression in diploid and aneuploid genomically unstable EEC is different from the expression profile of proteins in diploid genomically stable EEC. We showed that changes in expression of proteins typical for EEC could already be detected in precursor lesions, that is, atypical hyperplasia of endometrium, highlighting their clinical potential for improving early diagnostics of EEC.