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HPMR

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Solute Carrier Family 9, Isoform A4 OKDB#: 3739
 Symbols: SLC9A4 Species: human
 Synonyms: NHE4, DKFZp313B031,SODIUM/HYDROGEN EXCHANGER 4, NHE4  Locus: 2q12.1 in Homo sapiens


For retrieval of Nucleotide and Amino Acid sequences please go to: OMIM Entrez Gene
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General Comment
General function Channel/transport protein
Comment
Cellular localization Plasma membrane
Comment
Ovarian function Oocyte growth
Comment
Expression regulated by
Comment
Ovarian localization Oocyte, Granulosa
Comment Granulosa cells regulate oocyte intracellular pH against acidosis in preantral follicles by multiple mechanisms. Fitzharris G et al. Mammalian oocytes grow within ovarian follicles in which the oocyte is coupled to surrounding granulosa cells by gap junctions. We report here that growing oocytes isolated from mouse preantral follicles are incapable of recovering from an experimentally induced acidosis, and that oocytes acquire the ability to manage acid loads by activating Na(+)/H(+) exchange during growth. By contrast, granulosa cells from similar preantral follicles possess substantial Na(+)/H(+) exchange capacity, which is attributable to the simultaneous action of two Na(+)/H(+) exchanger isoforms: NHE1 and NHE3. Granulosa cells were also found to possess a V-type H(+)-ATPase that drives partial acidosis recovery when Na(+)/H(+) exchange is inactivated. By monitoring intracellular pH (pHi) in small follicle-enclosed oocytes, we found that the oocyte has access to each of these acidosis-correcting activities, such that small follicle-enclosed oocytes readily recover from acidosis in a manner resembling granulosa cells. However, follicle-enclosed oocytes are unable to access these activities if gap-junction communication within the follicle is inhibited. Together, these experiments identify the NHE isoforms involved in regulating oocyte pHi, indicate that gap junctions allow granulosa cells to exogenously regulate oocyte pHi against acidosis until the oocyte has acquired endogenous pHi regulation, and reveal that granulosa cells possess multiple mechanisms for carrying out this function.
Follicle stages Secondary, Antral, Preovulatory
Comment
Phenotypes
Mutations 0 mutations
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Phenotypes and GWAS show phenotypes and GWAS
Links
OMIM (Online Mendelian Inheritance in Man: an excellent source of general gene description and genetic information.)
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created: Nov. 8, 2007, 6:48 a.m. by: hsueh   email:
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last update: Nov. 8, 2007, 6:49 a.m. by: hsueh    email:



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