<?xml version="1.0"?>
<edsp version="3.1" about_me="http://ycmi.med.yale.edu/EAVCR/EDSP" source="Olfactory Receptors Database">
  <source>
    <type>eav/cr</type>
    <name>Data Store:SenseLab</name>
    <location>ordb.biotech.ttu.edu</location>
    <date>4/12/2026 7:37:42 AM</date>
    <query_method>GET</query_method>
    <query_parameter>o=229638</query_parameter>
  </source>
  <metadata type="partial" time="0.0156242000011844">
    <datatypes>
      <datatype id="B" name="Boolean" xml_datatype="xs:boolean" />
      <datatype id="C" name="Object/Ref" xml_datatype="xs:long" />
      <datatype id="D" name="Datetime" xml_datatype="xs:dateTime" />
      <datatype id="F" name="Formula(only)" xml_datatype="xs:anyType" />
      <datatype id="H" name="Hierarchy(p)" xml_datatype="xs:long" />
      <datatype id="I" name="Integer" xml_datatype="xs:long" />
      <datatype id="M" name="Memo" xml_datatype="xs:string" />
      <datatype id="R" name="Real" xml_datatype="xs:double" />
      <datatype id="S" name="String" xml_datatype="xs:string" />
      <datatype id="V" name="Object/Value" xml_datatype="xs:long" />
      <datatype id="W" name="Object/Ref(MC)" xml_datatype="xs:long" />
      <datatype id="Y" name="Binary" xml_datatype="xs:base64Binary" />
    </datatypes>
    <metadata_ontology>
      <sem_type_atts />
      <sem_rel_types />
      <sem_rel_att />
    </metadata_ontology>
    <database id="d2" name="modeldb" caption="ModelDB" caption_long="Model Database" description="ModelDB provides an accessible location for storing and efficiently retrieving compartmental neuron models. ModelDB is tightly coupled with NeuronDB. Models can be coded in any language for any environment, though ModelDB has been initially constructed for use with NEURON and GENESIS. Model code can be viewed before downloading and browsers can be set to auto-launch the models" main_class="19" version="3" version_date="4/12/2002 11:28:19 AM">
      <class id="c126" name="gene" caption="Gene Name" description="These (ModelDB applicable) gene's are involved in neuronal function or make up the sub-units which, when assembled, form membrane channels and receptors." object_description_hide="false" type="E" is_concept="false" host_concepts="false" uid="" version="3" version_date="6/10/2020 1:43:23 PM">
        <att id="a453" dt_id="S" sn="1" name="GenebankName" caption="Genebank name" description="" width="20" is_concept="false" host_concepts="false" srt_id="s" sra_id="s" version="1" version_date="4/1/2008 2:51:41 PM" />
        <att id="a458" dt_id="S" sn="2" name="gene_type" caption="Gene type" description="Gene type encodes channel," width="20" is_concept="false" host_concepts="false" srt_id="s" sra_id="s" version="1" version_date="4/1/2008 3:01:10 PM" />
        <att id="a460" dt_id="S" sn="3" name="phenotype" caption="Phenotype" description="Functional description of the gene" width="60" is_concept="false" host_concepts="false" srt_id="s" sra_id="s" version="1" version_date="4/1/2008 3:03:12 PM" />
      </class>
    </database>
  </metadata>
  <data time="0">
    <data_database db_id="d2">
      <data_class class_id="c126" version="3">
        <object id="o229638" name="KCa1.1 KCNMA1" description="&quot;MaxiK channels are large conductance, voltage and calcium-sensitive potassium channels which are fundamental to the control of smooth muscle tone and neuronal excitability. MaxiK channels can be formed by 2 subunits: the pore-forming alpha subunit, which is the product of this gene, and the modulatory beta subunit. Intracellular calcium regulates the physical association between the alpha and beta subunits. Alternatively spliced transcript variants encoding different isoforms have been identified. [provided by RefSeq, Jul 2008]&quot;" uid="" version="2" version_date="6/20/2017 2:38:11 PM">
          <att_value att_id="a453" value="KCNMA1" />
          <att_value att_id="a460" value="large conductance, voltage and calcium-sensitive" />
        </object>
      </data_class>
    </data_database>
  </data>
</edsp>

