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Redefining the N-Terminal Regulatory Region of the Ca(2+)/H(+) Antiporter CAX1 in Tomato

Calcium (Ca(2+)) is an essential plant nutrient, and Ca(2+)/H(+) exchangers (CAXs) regulate Ca(2+) partitioning between subcellular compartments. AtCAX1 activity is inhibited by its N-terminal regulatory region (NRR), which was initially defined as the sequence between the first two methionines. How...

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Autores principales: Han, Beibei, Tai, Yuxin, Li, Shuping, Shi, Junmei, Wu, Xueqing, Kakeshpour, Tayebeh, Weng, Jianfeng, Cheng, Xianguo, Park, Sunghun, Wu, Qingyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9310016/
https://www.ncbi.nlm.nih.gov/pubmed/35898213
http://dx.doi.org/10.3389/fpls.2022.938839
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author Han, Beibei
Tai, Yuxin
Li, Shuping
Shi, Junmei
Wu, Xueqing
Kakeshpour, Tayebeh
Weng, Jianfeng
Cheng, Xianguo
Park, Sunghun
Wu, Qingyu
author_facet Han, Beibei
Tai, Yuxin
Li, Shuping
Shi, Junmei
Wu, Xueqing
Kakeshpour, Tayebeh
Weng, Jianfeng
Cheng, Xianguo
Park, Sunghun
Wu, Qingyu
author_sort Han, Beibei
collection PubMed
description Calcium (Ca(2+)) is an essential plant nutrient, and Ca(2+)/H(+) exchangers (CAXs) regulate Ca(2+) partitioning between subcellular compartments. AtCAX1 activity is inhibited by its N-terminal regulatory region (NRR), which was initially defined as the sequence between the first two methionines. However, the accuracy of this NRR definition and the NRR regulatory mechanism remain unclear. Here, using tomato SlCAX1 as a model, we redefined the NRR of CAXs and demonstrated that our new definition is also applicable to Arabidopsis AtCAX1 and AtCAX3. The N-terminal-truncated SlCAX1 (SlCAX1(Δ39)) but not the full-length SlCAX1 was active in yeast, similar to Arabidopsis AtCAX1. Characterization of slcax1 mutants generated by CRISPR-Cas9 confirmed the calcium transport ability of SlCAX1. Sequence alignment between SlCAX1, AtCAX1, AtCAX3, and the Bacillus subtilis Ca(2+)/H(+) antiporter protein YfkE revealed that SlCAX1 does not have the 2nd methionine and YfkE does not have any amino acid residues in front of the first transmembrane domain. Truncating the amino acid residues up to the first transmembrane of SlCAX1 (SlCAX1(Δ66)) further increased its activity. The same truncation had a similar effect on Arabidopsis AtCAX1 and AtCAX3. Expression of full-length SlCAX1 and SlCAX1(Δ66) in tomato plants confirmed the results. Our results suggest that SlCAX1 is critical for Ca(2+) homeostasis and all the amino acid residues in front of the first transmembrane domain inhibit the activity of CAXs. Our redefinition of the NRR will facilitate fine-tuning of Ca(2+) partitioning to reduce the incidence of Ca(2+)-related physiological disorders in crops.
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spelling pubmed-93100162022-07-26 Redefining the N-Terminal Regulatory Region of the Ca(2+)/H(+) Antiporter CAX1 in Tomato Han, Beibei Tai, Yuxin Li, Shuping Shi, Junmei Wu, Xueqing Kakeshpour, Tayebeh Weng, Jianfeng Cheng, Xianguo Park, Sunghun Wu, Qingyu Front Plant Sci Plant Science Calcium (Ca(2+)) is an essential plant nutrient, and Ca(2+)/H(+) exchangers (CAXs) regulate Ca(2+) partitioning between subcellular compartments. AtCAX1 activity is inhibited by its N-terminal regulatory region (NRR), which was initially defined as the sequence between the first two methionines. However, the accuracy of this NRR definition and the NRR regulatory mechanism remain unclear. Here, using tomato SlCAX1 as a model, we redefined the NRR of CAXs and demonstrated that our new definition is also applicable to Arabidopsis AtCAX1 and AtCAX3. The N-terminal-truncated SlCAX1 (SlCAX1(Δ39)) but not the full-length SlCAX1 was active in yeast, similar to Arabidopsis AtCAX1. Characterization of slcax1 mutants generated by CRISPR-Cas9 confirmed the calcium transport ability of SlCAX1. Sequence alignment between SlCAX1, AtCAX1, AtCAX3, and the Bacillus subtilis Ca(2+)/H(+) antiporter protein YfkE revealed that SlCAX1 does not have the 2nd methionine and YfkE does not have any amino acid residues in front of the first transmembrane domain. Truncating the amino acid residues up to the first transmembrane of SlCAX1 (SlCAX1(Δ66)) further increased its activity. The same truncation had a similar effect on Arabidopsis AtCAX1 and AtCAX3. Expression of full-length SlCAX1 and SlCAX1(Δ66) in tomato plants confirmed the results. Our results suggest that SlCAX1 is critical for Ca(2+) homeostasis and all the amino acid residues in front of the first transmembrane domain inhibit the activity of CAXs. Our redefinition of the NRR will facilitate fine-tuning of Ca(2+) partitioning to reduce the incidence of Ca(2+)-related physiological disorders in crops. Frontiers Media S.A. 2022-07-11 /pmc/articles/PMC9310016/ /pubmed/35898213 http://dx.doi.org/10.3389/fpls.2022.938839 Text en Copyright © 2022 Han, Tai, Li, Shi, Wu, Kakeshpour, Weng, Cheng, Park and Wu. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Plant Science
Han, Beibei
Tai, Yuxin
Li, Shuping
Shi, Junmei
Wu, Xueqing
Kakeshpour, Tayebeh
Weng, Jianfeng
Cheng, Xianguo
Park, Sunghun
Wu, Qingyu
Redefining the N-Terminal Regulatory Region of the Ca(2+)/H(+) Antiporter CAX1 in Tomato
title Redefining the N-Terminal Regulatory Region of the Ca(2+)/H(+) Antiporter CAX1 in Tomato
title_full Redefining the N-Terminal Regulatory Region of the Ca(2+)/H(+) Antiporter CAX1 in Tomato
title_fullStr Redefining the N-Terminal Regulatory Region of the Ca(2+)/H(+) Antiporter CAX1 in Tomato
title_full_unstemmed Redefining the N-Terminal Regulatory Region of the Ca(2+)/H(+) Antiporter CAX1 in Tomato
title_short Redefining the N-Terminal Regulatory Region of the Ca(2+)/H(+) Antiporter CAX1 in Tomato
title_sort redefining the n-terminal regulatory region of the ca(2+)/h(+) antiporter cax1 in tomato
topic Plant Science
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9310016/
https://www.ncbi.nlm.nih.gov/pubmed/35898213
http://dx.doi.org/10.3389/fpls.2022.938839
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