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borate transport and cell growth and proliferation not

Borate Transport and Cell Growth and Proliferation: Not Only in

The recent identification of boron transporters, BOR1 in plants and NaBC1 in mammals, and that NaBC1 functions as an electrogenic Na+-coupled borate Request PDF Borate Transport and Cell Growth and Proliferation: Not Only in Plants Boron is an abundant mineral essential for the life cycle of plants and Borate Transport and Cell Growth and Proliferation: Not Only in

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Extra Views Borate Transport and Cell Growth and Proliferation

The importance of borate as an essential micromineral in plants, animals and humans that affect growth and development prompted us to study the transport mechanism of BTR1 The recent identification of boron transporters, BOR1 in plants and NaBC1 in mammals, and that NaBC1 functions as an electrogenic Na+-coupled borate transporter essential for Borate Transport and Cell Growth and Proliferation: Not Only in

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Borate transport and cell growth and proliferation. Not only in

Search worldwide, life-sciences literature Search. Advanced Search Coronavirus articles and preprints Search examples: "breast cancer" Smith JAt low concentrations, borate activated the MAPK pathway to stimulate cell growth and proliferation, and at high concentrations, it was toxic. Accordingly, NaBC1 Is a Ubiquitous Electrogenic Na+-Coupled Borate

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Borate transport and cell growth and proliferation Semantic Scholar

Borate transport and cell growth and proliferation @article{Park2005BorateTA, title={Borate transport and cell growth and proliferation}, author={Mee-Sun Park and Mentioning: 50 Borate Transport and Cell Growth and Proliferation: Not Only in Plants Park, Meeyoung, Li, Qin, Shcheynikov, Nikolay, Muallem, Shmuel, Zeng, WeizongBorate Transport and Cell Growth and Proliferation: Not Only in

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Transport-coupled ubiquitination of the borate

BOR1 variants that lack B-transport activity showed a significant reduction of polyubiquitination and subsequent vacuolar sorting. Coexpression of wild-type (WT) In the absence of borate, it of NaBC1 halted cell growth and proliferation. These conducts Na and OH (H ). In the presence of borate, findings may reveal a previously unrecognized role for BTR1 functions as an electrogenic Na -coupled borate NaBC1 in borate homeostasis and open the way to cotransporter, and therefore we renamed it NaBC1 toCell Press NaBC1 Is a Ubiquitous Electrogenic Na -Coupled Borate

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Seawater fish use an electrogenic boric acid

Requirement of borate cross-linking of cell wall rhamnogalacturonan II for Arabidopsis growth. Science. 2001; 294: 846-849. Crossref; PubMed; Borate transport and cell growth and Calcium fructoborate (CF), a sugar-borate ester (SBE), is the most scientifically studied boron-based dietary supplement, with over a dozen of published studies on its unique chemical and clinical properties [ 1 ]. SBEs are found in fruits, vegetables, certain nuts, and legumes, and they are naturally absorbed by animal cells [ 2 ].Calcium Fructoborate for Bone and Cardiovascular Health PMC

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NaBC1 Is a Ubiquitous Electrogenic Na + -Coupled Borate Cell

Boron is a vital micronutrient in plants and may be essential for animal growth and development. Whereas the role of boron in the life cycle of plants is well documented, nothing is known about boron homeostasis and function in animal cells. NaBC1, the mammalian homolog of AtBor1, is a borate transporter. In the absence of borate, Boron is a vital micronutrient in plants and may be essential for animal growth and development. Whereas the role of boron in the life cycle of plants is well documented, nothing is known about boron homeostasis and function in animal cells. NaBC1, the mammalian homolog of AtBor1, is a borate transporter. In the absence of borate, NaBC1 Is a Ubiquitous Electrogenic Na + -Coupled Borate Cell

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New Phytologist Boron and calcium induce major changes in

The requirement of trace amounts of boron (B) for plant growth was reported as early as 1923 (Warington, 1923) and over several decades this micronutrient has been related to most biochemical, physiological or anatomical plant processes.Cell wall stability through borate cross-linking of apiosyl residues of the pectin polysaccharide It has been suggested that the complexation of borate via organic cis-diol groups is the most likely chemical mechanism for this element to the transport of boron (B) to cells is facilitated by Muallem S, Zeng W (2005) Borate transport and cell growth and proliferation: not only in plants. Cell Cycle. 4:24–26. httpsTherapeutic Effects of Newly Synthesized Boron Compounds

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Autosomal recessive corneal endothelial dystrophy (CHED2) is

However, SLC4A11 is an electrogenic Na/borate cotransporter that stimulates cell growth and proliferation by increasing intracellular borate and activating the MAPK pathway. 11,12 The SLC4A11 gene on chromosome 20p12 has 19 exons, all containing coding sequences and encoding 891 amino acids.Semantic Scholar extracted view of "Borate transport and cell growth and proliferation" by Mee-Sun Park et al. {Borate transport and cell growth and proliferation}, author={Mee-Sun Park and Qin Li and Nikolay Shcheynikov and Shmuel Muallem and Weizong Zeng}, journal={Cell Cycle}, year={2005}, volume={4}, url= {httpsBorate transport and cell growth and proliferation Semantic

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New Phytologist Boron and calcium induce major changes in

The requirement of trace amounts of boron (B) for plant growth was reported as early as 1923 (Warington, 1923) and over several decades this micronutrient has been related to most biochemical, physiological or anatomical plant processes.Cell wall stability through borate cross-linking of apiosyl residues of the pectin polysaccharide Borate Transport and Cell Growth and Proliferation: Not Only in Plants. Mee-Sun Park Qin Li N. Shcheynikov S. Muallem Weizong Zeng. Biology. and thatNaBC1 functions as an electrogenic Na+-coupled borate transporter essential for cell growth and proliferation open the way to probe the roles of bOron in cellular function andBoron in plants and animals: Is there a role beyond cell-wall

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Dietary Supplementation of Boron Differentially Alters Expression

Inorganic boron (B), in the form of various borates, is readily absorbed across gastrointestinal epithelia. Although there is no stated B requirement, dietary B supplementation is thought to positively affect animal growth and metabolism, including promotion of bone strength and cell proliferation. Because of effective homeostatic Boron (B) is an essential element for plants, but is also toxic when present in excess. B deficiency and toxicity are both major agricultural problems worldwide, and elucidating the molecular mechanisms of B transport Cell Press Boron transport mechanisms:

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Borate Transport and Cell Growth and Proliferation: Not Only

Mentioning: 50 Borate Transport and Cell Growth and Proliferation: Not Only in Plants Park, Meeyoung, Li, Qin, Shcheynikov, Nikolay, Muallem, Shmuel, Zeng, Weizongtransport and cell growth and proliferation. Not only in plants. (MoA) of NOB species is related to both the B signaling molecule [autoinducer-2–borate (AI-2B)],(PDF) Effects of Supplemental Boron on Intestinal Proliferation

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NaBC1 Is a Ubiquitous Electrogenic Na+-Coupled Borate

Determination of Cell Growth and Proliferation. Cell growth was assessed by counting cell numbers and cell proliferation by the incorporation of [3 H]thymidine. HeLa cells were cultured to 30% confluency, synchronized by incubating for 16 hr in serum-free media, and then treated with borate for additional 16 hr.Park M, Li Q, Shcheynikov N, Zeng W, Muallem S. NaBC1 is a ubiquitous electrogenic Na+ -coupled borate transporter essential for cellular boron homeostasis and cell growth and proliferation. Mol Cell. 2004;16(3):331–41. Article Google Scholar Park M, Li Q, Shcheynikov N, Muallem S, Zeng W. Borate transport and cell growth and Chemical stability and osteogenic activity of plasma-sprayed

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Boron-containing Compounds, Regulation of Therapeutic Potential

Park M, Li Q, Shcheynikov N, Muallen S, Zeng W (2005) Borate transport and cell growth and proliferation: not only in plants. Cell Cycle 4(1):24–26. CrossRef PubMed CAS Google Scholar Scorei R (2011) Boron compounds in the In this perspective, a different efficiency in borate transport was also proposed [13,15]. In a further study on DU145 prostate cancer cells, Muallem, S.; Zeng, W. Borate Transport and Cell Growth and Proliferation: Not Only in Plants. Cell Cycle 2005, 4, 24–26. [Google Scholar]Antioxidants Free Full-Text Redox Mechanisms Underlying the

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Mild High Concentrations of Boric Acid Repress Leaf Formation

Park M, Li Q, Shcheynikov N, Muallem S, Zeng WZ (2005) Borate transport and cell growth and proliferation: not only in plants. Cell Cycle 4:24–26. CAS PubMed Google Scholar Pereira GL, Siqueira JA, Batista-Silva W, Cardoso FB, Nunes-Nesi A, Araújo WL (2021) Boron: more than an essential element for land plants?

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