Cloning and Expression Analysis of p26 Gene in Artemia sinica
L Jiang, L Hou, X Zou, R Zhang, J Wang… - Acta biochimica et …, 2007 - Wiley Online Library
The protein p26 is a small heat shock protein that functions as a molecular chaperone to
protect embryos by preventing irreversible protein damage during embryonic development …
protect embryos by preventing irreversible protein damage during embryonic development …
[HTML][HTML] Diversity, structure, and expression of the gene for p26, a small heat shock protein from Artemia
p26, a small heat shock protein, is thought to protect Artemia embryos from stress during
encystment and diapause. Full-length p26 cDNAs were compared and used to determine …
encystment and diapause. Full-length p26 cDNAs were compared and used to determine …
Molecular characterization of a small heat shock/α-crystallin protein in encysted Artemia embryos
Molecular chaperones protect cells during stress by limiting the denaturation/aggregation of
proteins and facilitating their renaturation. In this context, brine shrimp embryos can endure …
proteins and facilitating their renaturation. In this context, brine shrimp embryos can endure …
[HTML][HTML] Inhibition of apoptosis by p26: implications for small heat shock protein function during Artemia development
TS Villeneuve, X Ma, Y Sun, MM Oulton… - Cell stress & …, 2006 - ncbi.nlm.nih.gov
Abstract p26, an abundantly expressed small heat shock protein, is thought to establish
stress resistance in oviparously developing embryos of the crustacean Artemia franciscana …
stress resistance in oviparously developing embryos of the crustacean Artemia franciscana …
Oligomerization, chaperone activity, and nuclear localization of p26, a small heat shock protein from Artemia franciscana
Y Sun, M Mansour, JA Crack, GL Gass… - Journal of biological …, 2004 - ASBMB
Artemia franciscana embryos undergo encystment, developmental arrest and diapause, the
last characterized by profound metabolic dormancy and extreme stress resistance. Encysted …
last characterized by profound metabolic dormancy and extreme stress resistance. Encysted …
Characterization of novel sequence motifs within N‐ and C‐terminal extensions of p26, a small heat shock protein from Artemia franciscana
Y Sun, TH MacRae - The FEBS journal, 2005 - Wiley Online Library
The small heat shock proteins function as molecular chaperones, an activity often requiring
reversible oligomerization and which protects against irreversible protein denaturation. An …
reversible oligomerization and which protects against irreversible protein denaturation. An …
Nuclear p26, a small heat shock/α-crystallin protein, and its relationship to stress resistance in Artemia franciscana embryos
JK Willsie, JS Clegg - Journal of Experimental Biology, 2001 - journals.biologists.com
The role of the small heat shock/α-crystallin protein, p26, in transcription in Artemia
franciscana embryos was examined using isolated nuclei, containing either control or …
franciscana embryos was examined using isolated nuclei, containing either control or …
Purification, Structure and In vitro Molecular‐Chaperone Activity of Artemia P26, a Small Heat‐Shockh/α‐Crystallin Protein
Encysted brine‐shrimp gastrulae bring their metabolism to a reversible standstill during
diapause and quiescence, demonstrating a remarkable resistance to unfavourable …
diapause and quiescence, demonstrating a remarkable resistance to unfavourable …
Functional analysis of a small heat shock/α‐crystallin protein from Artemia franciscana Oligomerization and thermotolerance
JA Crack, M Mansour, Y Sun… - European journal of …, 2002 - Wiley Online Library
Oviparously developing embryos of the brine shrimp, Artemia franciscana, synthesize
abundant quantities of a small heat shock/α‐crystallin protein, termed p26. Wild‐type p26 …
abundant quantities of a small heat shock/α‐crystallin protein, termed p26. Wild‐type p26 …
Structural and functional roles for β‐strand 7 in the α‐crystallin domain of p26, a polydisperse small heat shock protein from Artemia franciscana
Y Sun, S Bojikova‐Fournier, TH MacRae - The FEBS journal, 2006 - Wiley Online Library
Oviparous development in the extremophile crustacean, Artemia franciscana, generates
encysted embryos which enter a profound state of dormancy, termed diapause. Encystment …
encysted embryos which enter a profound state of dormancy, termed diapause. Encystment …