TY - JOUR
T1 - Zebrafish ftz-f1a (nuclear receptor 5a2) functions in skeletal muscle organization
AU - Sheela, Sundaram Gnanapackiam
AU - Lee, Wen Chih
AU - Lin, Wen Wen
AU - Chung, Bon Chu
N1 - Funding Information:
We would like to thank Drs. Monte Westerfield, Vladimir Korzh, and Woon-Khiong Chan for the gifts of plasmids, antibodies, and discussions. This work was supported by grants NSC 92-2321-B-001-010 from National Science Council and AS91IZ2PP from Academia Sinica, Republic of China.
PY - 2005/10/15
Y1 - 2005/10/15
N2 - Fushi-tarazu factor 1a (Ftz-F1a, Ff1a, Nr5a2) is a nuclear receptor with diverse functions in many tissues. Here, we report the function of ff1a in zebrafish muscle differentiation. In situ hybridization revealed that ff1a mRNA was present in the adaxial and migrating slow muscle precursors and was down-regulated when slow muscle cells matured. This expression was under the control of hedgehog genes, expanded when hedgehog was increased and missing in mutants defective in genes in the Hedgehog pathway like you-too (yot), sonic you (syu), and u-boot (ubo). Blocking ff1a activity by injecting a deleted form of ff1a or an antisense ff1a morpholino oligo into fish embryos caused thinner and disorganized fibers of both slow and fast properties. Transient expression of ff1a in syu, ubo, and yot embryos led to more fibril bundles, even when slow myoblasts were transfated into fast properties. We showed that ff1a and prox1 complemented each other in slow myofibril assembly, but they did not affect the expression of each other. These results demonstrate that ff1a functions in both slow and fast muscle morphogenesis in response to Hedgehog signaling, and this function parallels the activity of another slow muscle gene, prox1.
AB - Fushi-tarazu factor 1a (Ftz-F1a, Ff1a, Nr5a2) is a nuclear receptor with diverse functions in many tissues. Here, we report the function of ff1a in zebrafish muscle differentiation. In situ hybridization revealed that ff1a mRNA was present in the adaxial and migrating slow muscle precursors and was down-regulated when slow muscle cells matured. This expression was under the control of hedgehog genes, expanded when hedgehog was increased and missing in mutants defective in genes in the Hedgehog pathway like you-too (yot), sonic you (syu), and u-boot (ubo). Blocking ff1a activity by injecting a deleted form of ff1a or an antisense ff1a morpholino oligo into fish embryos caused thinner and disorganized fibers of both slow and fast properties. Transient expression of ff1a in syu, ubo, and yot embryos led to more fibril bundles, even when slow myoblasts were transfated into fast properties. We showed that ff1a and prox1 complemented each other in slow myofibril assembly, but they did not affect the expression of each other. These results demonstrate that ff1a functions in both slow and fast muscle morphogenesis in response to Hedgehog signaling, and this function parallels the activity of another slow muscle gene, prox1.
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U2 - 10.1016/j.ydbio.2005.06.023
DO - 10.1016/j.ydbio.2005.06.023
M3 - Article
C2 - 16162335
AN - SCOPUS:26644449822
SN - 0012-1606
VL - 286
SP - 377
EP - 390
JO - Developmental Biology
JF - Developmental Biology
IS - 2
ER -