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815篇 您的检索式:作者名="KHOSLA S"
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1The strigolactone receptor D14 targets SMAX1 for degradation in response to GR24 treatment and osmotic stress显示文摘The effects of the phytohormone strigolactone(SL)and smoke-derived karrikins(KARs)on plants are generally distinct,despite the fact that they are perceived through very similar mechanisms.The homologous receptors DWARF14(D14)and KARRIKIN-INSENSITIVE2(KAI2),together with the F-box protein MORE AXILLARY GROWTH2(MAX2),mediate SL and KAR responses,respectively,by targeting different SMAX1-LIKE(SMXL)family proteins for degradation.These mechanisms are putatively well-insulated,with D14-MAX2 targeting SMXL6,SMXL7,and SMXL8 and KAI2-MAX2 targeting SMAX1 and SMXL2 in Arabidopsis thaliana.Recent evidence challenges this model.We investigated whether D14 can target SMAX1 and whether this occurs naturally.Genetic analysis indicates that the SL analog GR24 promotes D14-SMAX1 crosstalk.Although D14 shows weaker interactions with SMAX1 than with SMXL2 or SMXL7,D14 mediates GR24-induced degradation of SMAX1 in plants.Osmotic stress triggers SMAX1 degradation,which is protective,through SL biosynthesis and signaling genes.Thus,D14-SMAX1 crosstalk may be beneficial and not simply a vestige of the evolution of the SL pathway.Qingtian Li Elena Sánchez Martín-Fontecha Aashima Khosla Alexandra R.F.White Sunhyun Chang Pilar Cubas David C.Nelson 2022Plant Communications2022,3,2:5
2Models for optimal lead time reduction 显示文摘Hill A V Khosla I S 1992Production and Operations Management1992,1,2:1
3Osteoporosis:now and the future 显示文摘Rachner TD Khosla S Hofbauer LC 2011Lancet2011,377,9773:1
4Hyperuricemia induces endothelial dysfunction显示文摘Khosla UM Zharikov S Finch JL 2005Kidney Int2005,67,5:1
5Hyperuricemia induces en- dothelial dysfunction 显示文摘Khosla UM Zharikov S Finch JL 2005Kidney Int2005,67,5:1
6Role of RANK ligand in mediating increased bone resorption in early postmenopausal women显示文摘Eghbali-Fatourechi G Khosla S Sanyal A Boyle WJ Lacey DL Riggs BL 0,,:1
7The roles of osteoprotegerin and osteoprotegerin ligand in the paracrine regulation of bone resorption显示文摘Hofbauer L.C Khosla S Dunstan C.R 0,,:1
8Osteoporosis: now and thefuture显示文摘Rachner TD Khosla S Hot'bauer LC 2011Lancet2011,377,9773:1
9Osteoporosis:now and the future显示文摘Rachner TD Khosla S Hofbauer LC 2011Lancet2011,377,9773:1
10Update on estrogens and the skeleton显示文摘Khosla S 2010J ClinEndocrinol Metab2010,95,8:1
11Hyperuricemia induces endothelial dysfunction显示文摘Khosla UM Zharikov S Finch JL 2005Kidney Int2005,67,5:1
12Minireview: The OPG/RANKL/RANK system 显示文摘Khosla S 2001Endocrinology2001,142,12:1
13The roles of osteoprotegerin and osteoprotegerin ligand in the paracrine regulation of bone resorption显示文摘Hofbauer L C Khosla S Dunstan C R 2000J Bone Miner Res2000,,15:1
14Clinical review144:Estrogen and the male skeleton显示文摘Khosla S Melton L J Riggs B L 2002J Clin Endocrinol Metab2002,87,4:1
15Osteoporosis:now and the future显示文摘Rachner TD Khosla S Hofbauer LC 2011Lancet2011,377,9773:1
16Male osteoporosis 显示文摘Drake M T Khosla S 2012Endocrinol Metab Clin North Am2012,41,3:1
17Osteoporosis update from the 2010 santa fe bone symposium显示文摘Ewiecki EM Bilezikian JP Khosla S 2011J Clin Densitom2011,14,:1
18keptin acts on human marrow stromal cells to enhance differentiation to osteoblasts and to inhibit differentiation to adipocytes显示文摘Thomas T Gori F Khosla S 1999Endocrinology1999,140,:1
19The roles of osteoprotegerin and osteoprotegerin ligand in the paracrine regulation of bone resorption 显示文摘Hofbauer LC Khosla S Dunstan CR 2000J Bone Miner Res2000,15,:1
20Minireview: the OPG/HANKL/HANK system 显示文摘Khosla S 2001En-docrinology2001,142,:1
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