Gene Details:
- Gene ID: AT4G18910
- Gene Symbol: ATNLM2, NIP1;2, NLM2
- Gene Name: NOD26-LIKE INTRINSIC PROTEIN 2, NOD26-like intrinsic protein 1;2, NOD26-LIKE INTRINSIC PROTEIN 2
- Description: NOD26-like intrinsic protein 1;(source:Araport11)
- TAIR Accession: locus:2117184
- Genome: Araport11_genome_release
- Species: Arabidopsis thaliana
Transcripts:
Plant Ontology Annotations:
- PO:0009005 — root — raíz (Spanish, exact), radices (exact, plural), radix (exact), 根 (Japanese, exact), aerial root (narrow), climbing root (narrow)
- PO:0009025 — vascular leaf — foliage leaf (exact), hoja vascular (Spanish, exact), leaf, vascular (exact), vascular leaves (exact, plural), 維管束のある葉, または維管束植物の葉 (Japanese, exact), crozier (related), macrophyll (related), megaphyll (related), ascidia (narrow), ascidium (narrow), fiddlehead (narrow), frond (narrow), needle-like leaf (narrow), pitcher (narrow), pitcher blade (narrow), pitcher-blade (narrow), scale-like leaf (narrow), sterile frond (narrow), trophophyll (narrow)
- PO:0009046 — flower — flor (Spanish, exact), 花 (Japanese, exact), floret (related), Asteraceae floret (narrow), basal flower (narrow), double flower (narrow), hermaphrodite flower (narrow), monoclinous flower (narrow), perfect flower (narrow)
Gene Ontology:
- GO:0046685 — acts upstream of or within — response to arsenic-containing substance
- GO:0005886 — located in — plasma membrane
- GO:0055085 — involved in — transmembrane transport
- GO:0080170 — acts upstream of or within — hydrogen peroxide transmembrane transport
- GO:0015700 — acts upstream of or within — arsenite transport
- GO:0015105 — enables — arsenite transmembrane transporter activity
- GO:0015250 — enables — water channel activity
- GO:0015267 — enables — channel activity
Function-related keywords:
- root , root , vascular leaf , flower
Literature:
- The complete set of genes encoding major intrinsic proteins in Arabidopsis provides a framework for a new nomenclature for major intrinsic proteins in plants. DOI: 10.1104/pp.126.4.1358 ; PMID: 11500536
- Cell cycle-regulated gene expression in Arabidopsis. DOI: 10.1074/jbc.M207570200 ; PMID: 12169696
- A defect in the yeast plasma membrane urea transporter Dur3p is complemented by CpNIP1, a Nod26-like protein from zucchini (Cucurbita pepo L.), and by Arabidopsis thaliana delta-TIP or gamma-TIP. DOI: 10.1016/s0014-5793(03)00671-9 ; PMID: 12860388
- Identification of new intrinsic proteins in Arabidopsis plasma membrane proteome. DOI: 10.1074/mcp.M400001-MCP200 ; PMID: 15060130
- Comprehensive comparison of auxin-regulated and brassinosteroid-regulated genes in Arabidopsis. DOI: 10.1104/pp.103.034736 ; PMID: 15047898
- Lipid utilization, gluconeogenesis, and seedling growth in Arabidopsis mutants lacking the glyoxylate cycle enzyme malate synthase. DOI: 10.1074/jbc.M407380200 ; PMID: 15272001
- DNA array analyses of Arabidopsis thaliana lacking a vacuolar Na+/H+ antiporter: impact of AtNHX1 on gene expression. DOI: 10.1111/j.1365-313X.2004.02253.x ; PMID: 15546358
- The transcription factor WIN1/SHN1 regulates Cutin biosynthesis in Arabidopsis thaliana. DOI: 10.1105/tpc.106.047076 ; PMID: 17449808
- Temporal analysis of sucrose-induced phosphorylation changes in plasma membrane proteins of Arabidopsis. DOI: 10.1074/mcp.M700164-MCP200 ; PMID: 17586839
- Arabidopsis NIP3;1 Plays an Important Role in Arsenic Uptake and Root-to-Shoot Translocation under Arsenite Stress Conditions. DOI: 10.1016/j.molp.2015.01.005 ; PMID: 25732589
- Aluminum-activated root malate and citrate exudation is independent of NIP1;2-facilitated root-cell-wall aluminum removal in Arabidopsis. DOI: 10.1080/15592324.2017.1422469 ; PMID: 29293394
- An exclusion mechanism is epistatic to an internal detoxification mechanism in aluminum resistance in Arabidopsis. DOI: 10.1186/s12870-020-02338-y ; PMID: 32188405
- Identification of new intrinsic proteins in Arabidopsis plasma membrane proteome. DOI: 10.1074/mcp.M400001-MCP200 ; PMID: 15060130
- Whole gene family expression and drought stress regulation of aquaporins. DOI: 10.1007/s11103-005-0352-1 ; PMID: 16235111
- Quantitative phosphoproteomics of early elicitor signaling in Arabidopsis. DOI: 10.1074/mcp.M600429-MCP200 ; PMID: 17317660
Sequences:
cDNA Sequence
- >AT4G18910.2
ATAAAAAATCGTCTCCAATCTTTTTCTCTCTCTGGATTTGCCAATAAATTGGGGATAACCAGCTACCAAACTCATTCACACAAAGTCATAACAGTCGTTTAAAGTCTGATCCTTTTCATTTTTCTTTAGTGTGTGAAAAGAGAAATACAGTTATGGCGGAGATCTCGGGAAACGGTGGTGATGCTAGAGACGGAGCTGTGGTGGTCAATCTCAAGGAAGAAGACGAACAACAACAACAACAACAAGCTATTCATAAACCCTTGAAGAAACAAGACTCTCTCCTCTCTATCTCTGTCCCTTTCTTACAAAAGTTGATGGCGGAGGTTTTGGGAACATACTTCTTGATATTCGCCGGTTGTGCCGCGGTGGCTGTAAACACACAACATGACAAAGCCGTGACTCTTCCAGGGATCGCCATCGTTTGGGGACTTACCGTCATGGTCCTTGTTTACTCTCTCGGTCACATCTCCGGTGCTCATTTCAATCCGGCCGTCACAATCGCATTCGCTTCTTGCGGCCGTTTCCCTCTTAAACAGGTTCCGGCTTATGTGATATCACAAGTGATCGGATCAACGCTAGCGGCGGCGACTTTACGGCTCTTGTTCGGACTTGATCAAGATGTTTGTAGTGGGAAACACGATGTGTTCGTCGGAACATTACCATCTGGATCGAATTTGCAGTCGTTTGTGATCGAGTTTATCATTACTTTCTACCTAATGTTCGTTATTTCTGGCGTTGCCACCGATAATAGAGCGATCGGAGAACTTGCTGGACTAGCAGTAGGATCAACAGTGCTACTTAACGTGATAATTGCCGGGTAATATACTATTATTAATTACTATCATTTTCTTTTTTATATAGTTTTCTTTATCGA - >AT4G18910.1
ATAAAAAATCGTCTCCAATCTTTTTCTCTCTCTGGATTTGCCAATAAATTGGGGATAACCAGCTACCAAACTCATTCACACAAAGTCATAACAGTCGTTTAAAGTCTGATCCTTTTCATTTTTCTTTAGTGTGTGAAAAGAGAAATACAGTTATGGCGGAGATCTCGGGAAACGGTGGTGATGCTAGAGACGGAGCTGTGGTGGTCAATCTCAAGGAAGAAGACGAACAACAACAACAACAACAAGCTATTCATAAACCCTTGAAGAAACAAGACTCTCTCCTCTCTATCTCTGTCCCTTTCTTACAAAAGTTGATGGCGGAGGTTTTGGGAACATACTTCTTGATATTCGCCGGTTGTGCCGCGGTGGCTGTAAACACACAACATGACAAAGCCGTGACTCTTCCAGGGATCGCCATCGTTTGGGGACTTACCGTCATGGTCCTTGTTTACTCTCTCGGTCACATCTCCGGTGCTCATTTCAATCCGGCCGTCACAATCGCATTCGCTTCTTGCGGCCGTTTCCCTCTTAAACAGGTTCCGGCTTATGTGATATCACAAGTGATCGGATCAACGCTAGCGGCGGCGACTTTACGGCTCTTGTTCGGACTTGATCAAGATGTTTGTAGTGGGAAACACGATGTGTTCGTCGGAACATTACCATCTGGATCGAATTTGCAGTCGTTTGTGATCGAGTTTATCATTACTTTCTACCTAATGTTCGTTATTTCTGGCGTTGCCACCGATAATAGAGCGATCGGAGAACTTGCTGGACTAGCAGTAGGATCAACAGTGCTACTTAACGTGATAATTGCCGGGTAATATACTATTATTAATTACTATCATTTTCTTTTTTATATAGTTTTCTTTATCGA
CDS Sequence
Protein Sequence