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IPR012292 is a Globin/Protoglobin.
<p>Globins are haem-containing proteins involved in binding and/or transporting oxygen. They belong to a very large and well studied family that is widely distributed in many organisms [[cite:PUB00035866]]. Globins have evolved from a common ancestor and can be divided into three groups: single-domain globins, and two types of chimeric globins, flavohaemoglobins and globin-coupled sensors. Bacteria have all three types of globins, while archaea lack flavohaemoglobins, and eukaryotes lack globin-coupled sensors [[cite:PUB00035865]]. Several functionally different haemoglobins can coexist in the same species. The major types of globins include:</p> <ul><li>Haemoglobin (Hb): tetramer of two alpha and two beta chains, although embryonic and foetal forms can substitute the alpha or beta chain for ones with higher oxygen affinity, such as gamma, delta, epsilon or zeta chains. Hb transports oxygen from lungs to other tissues in vertebrates [[cite:PUB00035870]]. Hb proteins are also present in unicellular organisms where they act as enzymes or sensors [[cite:PUB00035871]].</li> <li>Myoglobin (Mb): monomeric protein responsible for oxygen storage in vertebrate muscle [[cite:PUB00035872]].</li> <li>Neuroglobin: a myoglobin-like haemprotein expressed in vertebrate brain and retina, where it is involved in neuroprotection from damage due to hypoxia or ischemia [[cite:PUB00029465]]. Neuroglobin belongs to a branch of the globin family that diverged early in evolution.</li> <li>Cytoglobin: an oxygen sensor expressed in multiple tissues. Related to neuroglobin [[cite:PUB00035873]].</li> <li>Erythrocruorin: highly cooperative extracellular respiratory proteins found in annelids and arthropods that are assembled from as many as 180 subunit into hexagonal bilayers [[cite:PUB00035877]].</li> <li>Leghaemoglobin (legHb or symbiotic Hb): occurs in the root nodules of leguminous plants, where it facilitates the diffusion of oxygen to symbiotic bacteriods in order to promote nitrogen fixation.</li> <li>Non-symbiotic haemoglobin (NsHb): occurs in non-leguminous plants, and can be over-expressed in stressed plants [[cite:PUB00055462]].</li> <li>Flavohaemoglobins (FHb): chimeric, with an N-terminal globin domain and a C-terminal ferredoxin reductase-like NAD/FAD-binding domain. FHb provides protection against nitric oxide via its C-terminal domain, which transfers electrons to haem in the globin [[cite:PUB00035867]].</li> <li>Globin-coupled sensors: chimeric, with an N-terminal myoglobin-like domain and a C-terminal domain that resembles the cytoplasmic signalling domain of bacterial chemoreceptors. They bind oxygen, and act to initiate an aerotactic response or regulate gene expression [[cite:PUB00035868], [cite:PUB00035869]].</li> <li>Protoglobin: a single domain globin found in archaea that is related to the N-terminal domain of globin-coupled sensors [[cite:PUB00016016]].</li> <li>Truncated 2/2 globin: lack the first helix, giving them a 2-over-2 instead of the canonical 3-over-3 α-helical sandwich fold. Can be divided into three main groups (I, II and II) based on structural features [[cite:PUB00055463]].</li> <li>Anaerobic nitrite reductase: phytoglobin that reduces nitrite to nitric oxide (NO) under anoxic conditions [[cite:PUB00153677]].</li></ul> <p>This domain superfamily is found in the entire globin family of proteins, including the microbial globins [[cite:PUB00016265]].</p>
This description is obtained from EB-eye REST.
GO predictions are based solely on the InterPro-to-GO mappings published by EMBL-EBI, which are in turn based on the mapping of predicted domains to the InterPro dataset. The InterPro-to-GO mapping was last updated on , while the GO metadata was last updated on .
GO term | Namespace | Name | Definition | Relationships |
---|---|---|---|---|
Molecular function | Oxygen binding | Interacting selectively and non-covalently with oxygen (O2). | ||
Molecular function | Heme binding | Interacting selectively and non-covalently with heme, any compound of iron complexed in a porphyrin (tetrapyrrole) ring. |
Transcript | Name | Description | Predicted domains | Domain count |
---|---|---|---|---|
– | PREDICTED: group 2 truncated hemoglobin YjbI-like [Cicer arietinum] gi|502124477|ref|XP_004498545.1| | 8 | ||
– | PREDICTED: group 2 truncated hemoglobin YjbI-like [Cicer arietinum] gi|502124477|ref|XP_004498545.1| | 8 | ||
– | PREDICTED: group 2 truncated hemoglobin YjbI-like [Cicer arietinum] gi|502124477|ref|XP_004498545.1| | 8 | ||
– | Nonsymbiotic hemoglobin [Lotus japonicus] gi|77799654|dbj|BAE46739.1| | 13 | ||
– | Nonsymbiotic hemoglobin [Lotus japonicus] gi|77799656|dbj|BAE46740.1| | 12 | ||
– | Nonsymbiotic hemoglobin [Lotus japonicus] gi|77799656|dbj|BAE46740.1| | 12 | ||
– | Nonsymbiotic hemoglobin [Lotus japonicus] gi|77799654|dbj|BAE46739.1| | 13 | ||
– | Leghemoglobin [Lotus japonicus] gi|77799650|dbj|BAE46737.1| | 13 | ||
– | Leghemoglobin [Lotus japonicus] gi|77799648|dbj|BAE46736.1| | 13 | ||
– | RecName: Full=Leghemoglobingi|11230993|dbj|BAB18108.1| leghemoglobin [Lotus japonicus] gi|20138517|sp|Q9FEP8.1|LGB_LOTJA | 13 | ||
– | PREDICTED: leghemoglobin-like [Cicer arietinum] gi|502118192|ref|XP_004496145.1| | 11 | ||
– | Hemoglobin-like protein; TAIR: AT4G32690.1 hemoglobin 3; Swiss-Prot: sp|Q67XG0|GLB3_ARATH Two-on-two hemoglobin-3; TrEMBL-Plants: tr|I3SAV1|I3SAV1_LOTJA Uncharacterized protein; Found in the gene: LotjaGi1g1v0172000 | 8 | ||
– | Hemoglobin-like protein; TAIR: AT4G32690.1 hemoglobin 3; Swiss-Prot: sp|Q67XG0|GLB3_ARATH Two-on-two hemoglobin-3; TrEMBL-Plants: tr|A0A0L9TDT4|A0A0L9TDT4_PHAAN Uncharacterized protein; Found in the gene: LotjaGi1g1v0398700 | 8 | ||
– | Non-symbiotic hemoglobin 1; TAIR: AT2G16060.1 hemoglobin 1; Swiss-Prot: sp|Q9FVL0|HBL1_MEDSA Non-symbiotic hemoglobin 1; TrEMBL-Plants: tr|Q3C1F4|Q3C1F4_LOTJA Nonsymbiotic hemoglobin; Found in the gene: LotjaGi3g1v0504500 | 14 | ||
– | Non-symbiotic hemoglobin 1; TAIR: AT2G16060.1 hemoglobin 1; Swiss-Prot: sp|Q9FVL0|HBL1_MEDSA Non-symbiotic hemoglobin 1; TrEMBL-Plants: tr|Q3C1F3|Q3C1F3_LOTJA Nonsymbiotic hemoglobin; Found in the gene: LotjaGi3g1v0504600 | 13 | ||
– | Non-symbiotic hemoglobin 1; TAIR: AT3G10520.1 hemoglobin 2; Swiss-Prot: sp|Q9FEP8|LGB_LOTJA Leghemoglobin; TrEMBL-Plants: tr|Q3C1F7|Q3C1F7_LOTJA Leghemoglobin; Found in the gene: LotjaGi5g1v0024700 | 13 | ||
– | Non-symbiotic hemoglobin 1; TAIR: AT3G10520.1 hemoglobin 2; Swiss-Prot: sp|Q9FEP8|LGB_LOTJA Leghemoglobin; TrEMBL-Plants: tr|Q3C1F6|Q3C1F6_LOTJA Leghemoglobin; Found in the gene: LotjaGi5g1v0024900 | 13 | ||
– | Non-symbiotic hemoglobin; TAIR: AT3G10520.1 hemoglobin 2; Swiss-Prot: sp|Q9FEP8|LGB_LOTJA Leghemoglobin; TrEMBL-Plants: tr|Q3C1F5|Q3C1F5_LOTJA Leghemoglobin; Found in the gene: LotjaGi5g1v0046500 | 13 | ||
– | Non-symbiotic hemoglobin 1; TAIR: AT3G10520.1 hemoglobin 2; Swiss-Prot: sp|P14848|LGB2_SESRO Leghemoglobin 2; TrEMBL-Plants: tr|B3SGL5|B3SGL5_MEDTR Leghemoglobin Lb120-1; Found in the gene: LotjaGi5g1v0253200 | 12 |
A list of co-occurring predicted domains within the L. japonicus gene space:
Predicted domain | Source | Observations | Saturation (%) |
---|---|---|---|
cd08923 | CDD | 1 | 5.26 |