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7 publications mentioning chi-mir-133b

Open access articles that are associated with the species Capra hircus and mention the gene name mir-133b. Click the [+] symbols to view sentences that include the gene name, or the word cloud on the right for a summary.

1
[+] score: 12
The continuously up-regulated expression patterns of miR-1, miR-206, miR-133 and miR-378 were similar to those in pig [14], which is consistent with their critical roles during muscle development. [score:7]
In addition to the myomiRs (miR-1, miR-133 and miR-206), other miRNAs, such as miR-542-3p and let-7a, are highly expressed in skeletal muscle throughout the prenatal and neonatal periods, suggesting that other miRNAs also play important roles in regulating pig myogenesis [14]. [score:4]
2009; 106(32): 13383– 7. 3 Chen J-F, Man del EM, Thomson JM, Wu Q, Callis TE, Hammond SM, et al The role of microRNA-1 and microRNA-133 in skeletal muscle proliferation and differentiation. [score:1]
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2
[+] score: 11
The result also indicated that, except muscle specific miRNA (for instance, miR-1, miR-206, miR-133 etc), many non-muscle special miRNAs also played important roles in myocyte proliferation or differentiation through target some myogenic transcription factors, this was consist with previous studies that reported non-muscle-specific miRNAs regulate skeletal muscle differentiation [74], [75]. [score:4]
MiR-1 or miR-206 promotes myogenic differentiation, while miR-133 over -expression enhances myoblast proliferation, but represses differentiation [10]– [11], [56]. [score:3]
The most abundant miRNAs identified in our study were highly consisted with study on Boer goat, which reported that miR-133, miR-1, miR-378 and miR-206 families were the top 20 miRNAs in 6 month old Boer goat longissimus tissue [53], indicating the importance of these miRNAs on skeletal muscle development and growth. [score:2]
The muscle specific miR-1, miR-133 and miR-206 are three of the most studied miRNAs up to now. [score:1]
Moreover, miR-1 and miR-133 have been implicated in skeletal muscle hypertrophy [14]. [score:1]
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3
[+] score: 8
Our research showed that miR-1 and miR-133 participated in skeletal muscle cell differentiation and maturation processes, in which miR-1 could promote the differentiation of skeletal muscle cells, but miR-133 inhibited differentiation to promote muscle cell proliferation [14]. [score:3]
miR-1 and miR-133 originate from the same miRNA polycistronic region and are co-transcribed, but miR-1 and miR-133 have opposite functions, confirming that miRNAs may play a very important role in regulating the balance of cell proliferation and differentiation. [score:2]
To date, many muscle-specific miRNAs, miR-1, miR-133, miR-206, miR-27, were found, which have been shown to play critical roles in skeletal muscle development. [score:2]
miR-1 and miR-206 promote the differentiation of myoblasts, and miR-133 promotes satellite cell proliferation 13– 15. [score:1]
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4
[+] score: 8
Our results showed that the expression patterns of miR-1, miR-133a, miR-133b, miR-144, miR-206, miR-299, miR-331 and miR-4286 (Additional file 3: Figure S3) were significantly different in the three stages (p < 0.01), indicating that they may participate in the regulation of follicular transition. [score:4]
To verify the Solexa sequencing data, we randomly selected five differentially expressed miRNAs (miR-1, miR-206, miR-122, miR-222, and miR-133), and conducted quantitative RT-PCR. [score:3]
The abundance of miR-1, miR-206, miR-122, miR-222, and miR-133 were normalised relative to the abundance of U6 small nuclear RNA (snRNA). [score:1]
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5
[+] score: 2
Linc-MD1 is required for appropriate muscle differentiation, at least in part because it regulates the levels of myocyte enhancer factor 2C (MEF2C) and mastermind-like protein 1 (MAML1) by sponging endogenous miR-133 and miR-135 in the cytoplasm of muscle cells [24]. [score:2]
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6
[+] score: 2
Yin H. Pasut A. Soleimani V. D. Bentzinger C. F. Antoun G. Thorn S. Seale P. Fernando P. van Ijcken W. Grosveld F. MicroRNA-133 controls brown adipose determination in skeletal muscle satellite cells by targeting Prdm16 Cell Metab. [score:2]
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7
[+] score: 1
To analyse the conservation of identified miRNAs, small RNA sequences were searched among vertebrate (51 species) using BLAST in miRBase v. 21, four miRNAs (let-7, miR-97, miR-125 and miR-133) were conserved among more than 40 species, 48 miRNAs were conserved among more than 30 species, and 201 miRNAs were conserved among more than 20 species (Supplement Files: Table  S4). [score:1]
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