Regression of stretch-induced growth of the anterior latissimus dorsi muscle of the adult fowl was characterized by measuring weight, protein, RNA, DNA, and collagen content. After 7 days of hypertrophy the total amount of protein, RNA, DNA, and collagen increased by 59, 228, 82, and 23%, respectively, above the control contralateral muscle. On removal of the stimulus, regression back to normal weight and composition was complete in 13 days except for total DNA content, which was still elevated 21% after 29 days of regression. After 28 days of hypertrophy, the total amount of protein, RNA, DNA, and collagen were 100, 126, 96, and 27%, respectively, greater than controls. On removal of the stimulus regression was again rapid, but reversal of the hypertrophy was not complete 35 days later with the total protein and RNA still elevated by 16-22% and the total DNA 35% above control level. The increase in the total collagen during hypertrophy was attributable to about equal increases in both the epimysial collagen and the internal collagen of the muscle. The study shows that reversal of hypertrophy can occur almost as rapidly as the hypertrophy process. RNA and protein are lost more rapidly than DNA.
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http://dx.doi.org/10.1152/ajpcell.1982.242.5.C333 | DOI Listing |
Mol Biol Rep
January 2025
Medical Sociology and Psychobiology, Department of Health and Physical Activity, University of Potsdam, 14469, Potsdam, Germany.
Background: Depression constitutes a risk factor for osteoporosis, but underlying molecular and cellular mechanisms are not fully understood. MiRNAs influence gene expression and are carried by extracellular vesicles (EV), affecting cell-cell communication.
Aims: (1) Identify the difference in miRNA expression between depressed patients and healthy controls; (2) Analyze associations of these miRNAs with bone turnover markers; (3) Analyze target genes of differentially regulated miRNAs and predict associated pathways regarding depression and bone metabolism.
Cell Mol Life Sci
January 2025
Department of Clinical Laboratory, Harbin Medical University Cancer Hospital, 150 Haping Road, Harbin, 150081, China.
Non-small cell lung cancer (NSCLC) has emerged as one of the most prevalent malignancies worldwide. N6-methyladenosine (mA) methylation, a pervasive epigenetic modification in long noncoding RNAs (lncRNAs), plays a crucial role in NSCLC progression. Here, we report that mA modification and the expression of the lncRNA stem cell inhibitory RNA transcript (SCIRT) was significantly upregulated in NSCLC tissues and cells.
View Article and Find Full Text PDFTrop Anim Health Prod
January 2025
Department of Agricultural Biotechnology, Faculty of Agriculture, Kırşehir Ahi Evran University, 40100, Kirsehir, Türkiye.
The present study was conducted on specific skeletal muscles of six weaned male kids from each of the Angora, Hair, Honamlı, and Kilis goat breeds. The relationships between the expression of myogenic factor 5 (Myf5) and myogenic factor 6 (Myf6) genes and muscle fibre characteristics were analysed. Muscle samples from the longissimus dorsi (LD) and semitendinosus (ST) were collected from six 90-day-old weaned male kids of each breed.
View Article and Find Full Text PDFMol Cancer Res
January 2025
Faculty of Medicine, University of Tsukuba, Tsukuba, Ibaraki, Japan.
Malignant neoplasms arise within a region of chronic inflammation caused by tissue injuries. Inflammation is a key factor involved in all aspects of tumorigenesis including initiation, proliferation, invasion, angiogenesis, and metastasis. Interleukin-1 (IL-1) plays critical functions in tumor development with influencing the tumor microenvironment and promoting cancer progression.
View Article and Find Full Text PDFMicrobiol Spectr
January 2025
Institute of Bioinformatics and Applied Biotechnology, Bengaluru, Karnataka, India.
Alba domain-containing proteins are ubiquitously found in archaea and eukaryotes. By binding to either DNA, RNA, or DNA:RNA hybrids, these proteins function in genome stabilization, chromatin organization, gene regulation, and/or translational modulation. In the malaria parasite , six Alba domain proteins PfAlba1-6 have been described, of which PfAlba1 has emerged as a "master regulator" of translation during parasite intra-erythrocytic development (IED).
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