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ZFIN ID:
ZDB-ATB-140714-1
CITATIONS
(20 total)
Antibody Name:
Ab4-sqstm1
Jin, B., Xie, L., Zhan, D., Zhou, L., Feng, Z., He, J., Qin, J., Zhao, C., Luo, L., Li, L. (2022) Nrf2 dictates the neuronal survival and differentiation of embryonic zebrafish harboring compromised alanyl-tRNA synthetase. Development (Cambridge, England). 149(17)
Inoue, M., Miyahara, H., Shiraishi, H., Shimizu, N., Tsumori, M., Kiyota, K., Maeda, M., Umeda, R., Ishitani, T., Hanada, R., Ihara, K., Hanada, T. (2021) Leucyl-tRNA synthetase deficiency systemically induces excessive autophagy in zebrafish. Scientific Reports. 11:8392
Mawed, S.A., He, Y., Zhang, J., Mei, J. (2020) Strategy of Hepatic Metabolic Defects Induced by
beclin1
Heterozygosity in Adult Zebrafish. International Journal of Molecular Sciences. 21(4):
Zhang, R., Varela, M., Forn-CunĂ, G., Torraca, V., van der Vaart, M., Meijer, A.H. (2020) Deficiency in the autophagy modulator Dram1 exacerbates pyroptotic cell death of Mycobacteria-infected macrophages. Cell Death & Disease. 11:277
Chuang, L.S., Morrison, J., Hsu, N.Y., Labrias, P.R., Nayar, S., Chen, E., Villaverde, N., Facey, J.A., Boschetti, G., Giri, M., Castillo-Martin, M., Thin, T.H., Sharma, Y., Chu, J., Cho, J.H. (2019) Zebrafish modeling of intestinal injury, bacterial exposures, and medications defines epithelial
in vivo
responses relevant to human inflammatory bowel disease. Disease models & mechanisms. 12(8):
Dong, G., Zhang, Z., Duan, K., Shi, W., Huang, R., Wang, B., Luo, L., Zhang, Y., Ruan, H., Huang, H. (2019) Beclin 1 deficiency causes hepatic cell apoptosis via endoplasmic reticulum stress in zebrafish larvae. FEBS letters. 594(7):1155-1165
Hu, Z., Chen, B., Zhao, Q. (2019) Hedgehog signaling regulates osteoblast differentiation in zebrafish larvae through modulation of autophagy. Biology Open. 8(5):
Zhang, R., Varela, M., Vallentgoed, W., Forn-Cuni, G., van der Vaart, M., Meijer, A.H. (2019) The selective autophagy receptors Optineurin and p62 are both required for zebrafish host resistance to mycobacterial infection. PLoS pathogens. 15:e1007329
Chen, B., Zheng, Y.M., Zhang, J.P. (2018) Comparative Study of Different Diets-Induced NAFLD Models of Zebrafish. Frontiers in endocrinology. 9:366
Li, Y.C., Zhang, M.Q., Zhang, J.P. (2018) Opposite Effects of Two Human ATG10 Isoforms on Replication of a HCV Sub-genomic Replicon Are Mediated via Regulating Autophagy Flux in Zebrafish. Frontiers in cellular and infection microbiology. 8:109
Swinnen, B., Bento-Abreu, A., Gendron, T.F., Boeynaems, S., Bogaert, E., Nuyts, R., Timmers, M., Scheveneels, W., Hersmus, N., Wang, J., Mizielinska, S., Isaacs, A.M., Petrucelli, L., Lemmens, R., Van Damme, P., Van Den Bosch, L., Robberecht, W. (2018) A zebrafish model for C9orf72 ALS reveals RNA toxicity as a pathogenic mechanism. Acta Neuropathologica. 135(3):427-443
Hu, Z.Y., Chen, B., Zhang, J.P., Ma, Y.Y. (2017) Up-regulation of autophagy-related gene 5 (
ATG5
) protects dopaminergic neurons in a zebrafish model of Parkinson's disease.. The Journal of biological chemistry. 292(44):18062-18074
Mans, L.A., Querol Cano, L., van Pelt, J., Giardoglou, P., Keune, W.J., Haramis, A.G. (2017) The tumor suppressor LKB1 regulates starvation-induced autophagy under systemic metabolic stress. Scientific Reports. 7:7327
Meng, X.H., Chen, B., Zhang, J.P. (2017) Intracellular Insulin and Impaired Autophagy in a Zebrafish model and a Cell Model of Type 2 diabetes. International journal of biological sciences. 13:985-995
Watchon, M., Yuan, K.C., Mackovski, N., Svahn, A.J., Cole, N.J., Goldsbury, C., Rinkwitz, S., Becker, T.S., Nicholson, G.A., Laird, A.S. (2017) Calpain inhibition is protective in Machado-Joseph disease zebrafish due to induction of autophagy. The Journal of neuroscience : the official journal of the Society for Neuroscience. 37(32):7782-7794
Zhang, J., Zhang, X., Liu, Y., Su, Z., Dawar, F.U., Dan, H., He, Y., Gui, J.F., Mei, J. (2017) Leucine mediates autophagosome-lysosome fusion and improves sperm motility by activating the PI3K/Akt pathway. Oncotarget. 8:111807-111818
Jia, X.E., Ma, K., Xu, T., Gao, L., Wu, S., Fu, C., Zhang, W., Wang, Z., Liu, K., Dong, M., Jing, C., Ren, C., Dong, Z., Chen, Y., Jin, Y., Huang, Q., Chang, X., Deng, M., Li, L., Luo, L., Zhu, J., Dang, Y., Chang, H.C., Zon, L.I., Zhou, Y., Chen, S., Pan, W. (2015) Mutation of kri1l causes definitive hematopoiesis failure via PERK-dependent excessive autophagy induction. Cell Research. 25(8):946-62
Gioacchini, G., Valle, L.D., Benato, F., Fimia, G.M., Nardacci, R., Ciccosanti, F., Piacentini, M., Borini, A., and Carnevali, O. (2013) Interplay between autophagy and apoptosis in the development of Danio rerio follicles and the effects of a probiotic. Reproduction, fertility, and development. 25(8):1115-1125
Mostowy, S., Boucontet, L., Mazon Moya, M.J., Sirianni, A., Boudinot, P., Hollinshead, M., Cossart, P., Herbomel, P., Levraud, J.P., and Colucci-Guyon, E. (2013) The Zebrafish as a New Model for the In Vivo Study of Shigella flexneri Interaction with Phagocytes and Bacterial Autophagy. PLoS pathogens. 9(9):e1003588
Additional Citations (1):
ZFIN Staff (2008) Antibody information from supplier. Manually curated data.
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