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12761por Rachmadewi, Asrinisa, Soekarjo, Damayanti D., Bait, Blandina Rosalina, Suryantan, Julia, Noor, Rivani, Rah, Jee Hyun, Wieringa, Frank T.“…To strengthen community-based treatment of severe acute malnutrition (SAM) in Indonesia, locally produced ready-to-use therapeutic foods (RUTFs) are needed, but data on their acceptability and effectiveness are lacking. …”
Publicado 2023
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12762por Kumar, Subodh, Singh, Harvinder, Prajapat, Manisha, Sarma, Phulen, Bhattacharyya, Anusuya, Kaur, Hardeep, Kaur, Gurjeet, Shekhar, Nishant, Kaushal, Karanveer, Kumari, Kalpna, Bansal, Seema, Mahendiratta, Saniya, Chauhan, Arushi, Singh, Ashutosh, Soloman Singh, Rahul, Sharma, Saurabh, Thota, Prasad, Avti, Pramod, Prakash, Ajay, Kuhad, Anurag, Medhi, Bikash“…It exhibits 2’O-methyl-transferase (2’O-MTase) activity of NSP16 using methyl group from S-adenosyl methionine (SAM) by methylating the 5-end of virally encoded mRNAs and shields viral RNA, and also controls its replication as well as infection. …”
Publicado 2023
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12763por Huening, Katherine A., Groves, Joshua T., Wildenthal, John A., Tabita, F. Robert, North, Justin A.“…All organisms utilize S-adenosyl-l-methionine (SAM) as a key co-substrate for methylation of biological molecules, synthesis of polyamines, and radical SAM reactions. …”
Publicado 2023
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12764por Kishi, Shingo, Mori, Shiori, Fujiwara-Tani, Rina, Ogata, Ruiko, Sasaki, Rika, Ikemoto, Ayaka, Goto, Kei, Sasaki, Takamitsu, Miyake, Makito, Sasagawa, Satoru, Kawaichi, Masashi, Luo, Yi, Bhawal, Ujjal Kumar, Fujimoto, Kiyohide, Nakagawa, Hidemitsu, Kuniyasu, Hiroki“…In contrast, RT4 cells derived from non-invasive cancers expressed low GNMT, and SAM treatment did not produce sarcosine and did not promote malignant phenotypes. …”
Publicado 2023
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12765“…Indications exist that this effect is antagonized by S-adenosylmethionine (SAM), and it was investigated whether combination with an inhibitor of SAM synthesis, cycloleucine, would result in increased inhibition of growth in rat leukaemia model (BNML). …”
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12766“…Conversely, a weak enhancement of mature SAM season rainfall in response to Atlantic SST change is suppressed by the atmospheric response to Pacific SST. …”
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12767“…BACKGROUND: The hypothalamic-pituitary-adrenocortical (HPA) axis and sympathetic adrenomedullary (SAM) system are the major stress-response pathways. …”
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12768“…In addition, FOS1 appears to be involved in maintenance of the SAM in the vegetative phase, because constitutive expression of FOS1 caused termination of the vegetative SAM. …”
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12769“…DISCUSSION: Methyl groups from S-adenosylmethionine (SAM) are needed for DNA methylation. Diets low in sources of methyl groups can lead to global DNA hypomethylation by impairing synthesis of SAM. …”
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12770por Macmaster, Rachel, Zelinskaya, Natalia, Savic, Miloje, Rankin, C. Robert, Conn, Graeme L.“…Essential residues for SAM coenzyme binding and an extended protein surface that likely interacts with the 30S ribosomal subunit were thus revealed. …”
Publicado 2010
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12771“…The modulation frequency and sound level were systematically varied, and the SAM stimuli were also presented simultaneously with wideband background noise at various levels. …”
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12772por Novensà, Laura, Novella, Susana, Medina, Pascual, Segarra, Gloria, Castillo, Nadia, Heras, Magda, Hermenegildo, Carlos, Dantas, Ana Paula“…Our study aims to determine the mechanisms whereby aging changes E2 effects on nitric oxide (NO) production in a mouse model of accelerated senescence (SAM). METHODS AND RESULTS: Although we found no differences on NO production in females SAM prone (SAMP, aged) compared to SAM resistant (SAMR, young), by either DAF-2 fluorescence or plasmatic nitrite/nitrate (NO2/NO3), in both cases, E2 treatment increased NO production in SAMR but had no effect in SAMP. …”
Publicado 2011
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12773“…PRINCIPAL FINDINGS: Here we report that the developmental phenotype of the drb235 triple mutant plant is the result of deregulated miRNA biogenesis in the shoot apical meristem (SAM) region. The expression of DRB2, DRB3 and DRB5 in wild-type seedlings is restricted to the SAM region. …”
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12774“…RESULTS: The X-ray crystal structures of SAM/FAD-bound bifunctional MnmC from Escherichia coli and Yersinia pestis, and FAD-bound bifunctional MnmC from Yersinia pestis were determined and the catalytic functions verified in an in vitro assay. …”
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12775“…Transcripts involved in mediating responses to stimulus including hormones or in various metabolic processes represent the top enriched GO functional category for the SAM and leaf dataset, respectively. Transcripts associated with protein degradation were also significantly changing in leaf and SAM implicating their involvement in triggering the developmental switch. …”
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12776por Ladnorg, Tatjana, Welle, Alexander, Heißler, Stefan, Wöll, Christof, Gliemann, Hartmut“…The choice of a particular SAM also allows for control over the orientation of the SURMOF. …”
Publicado 2013
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12777por Senses, Kerem M, Gonen, Mithat, Barutcu, Ahmet R, Kalaylioglu, Zeynep, Isbilen, Murat, Konu, Ozlen, Chen, Yao T, Altorki, Nasser K, Gure, Ali O“…Polymorphisms of enzymes within the 1-carbon pathway have been shown to affect S-adenosyl methionine (SAM) production, which is the sole methyl donor in the cell. …”
Publicado 2013
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12778por Lee, Kam-Fai, Chen, Jiann-Hwa, Teng, Chih-Chuan, Shen, Chien-Heng, Hsieh, Meng-Chiao, Lu, Chien-Chang, Lee, Ko-Chao, Lee, Li-Ya, Chen, Wan-Ping, Chen, Chin-Chu, Huang, Wen-Shih, Kuo, Hsing-Chun“…The proteins from the stroke animal model (SAM) were evaluated to determine the effect of H. erinaceus mycelium. …”
Publicado 2014
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12779“…SAM criteria categorize written material into “superior,” “adequate” and “not suitable.” …”
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12780por Lanz, Nicholas D., Pandelia, Maria-Eirini, Kakar, Elizabeth S., Lee, Kyung-Hoon, Krebs, Carsten, Booker, Squire J.“…LS is a member of the radical SAM superfamily, enzymes that use a [4Fe–4S] cluster to effect the reductive cleavage of S-adenosyl-l-methionine (SAM) to l-methionine and a 5′-deoxyadenosyl 5′-radical (5′-dA(•)). …”
Publicado 2014
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