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Functional reconstitution into liposomes of purified human RhCG ammonia channelPhosphorylation and ankyrin-G binding of the C-terminal domain regulate targeting and function of the ammonium transporter RhBGFunction of human Rh based on structure of RhCG at 2.1 AMice expressing RHAG and RHD human blood group genesMechanism of Disruption of the Amt-GlnK Complex by PII-Mediated Sensing of 2-OxoglutarateUnusual carbon fixation gives rise to diverse polyketide extender unitsHuman RhAG ammonia channel is impaired by the Phe65Ser mutation in overhydrated stomatocytic red cellsIdentification of a Novel Regulatory Mechanism of Nutrient Transport Controlled by TORC1-Npr1-Amu1/Par32Rhesus glycoprotein p2 (Rhp2) is a novel member of the Rh family of ammonia transporters highly expressed in shark kidney.Molecular physiology of the Rh ammonia transport proteinsAn investigation of secondary anti-D immunisation among phenotypically RhD-negative individuals in the Chinese population.Direct observation of electrogenic NH4(+) transport in ammonium transport (Amt) proteins.An Rh1-GFP fusion protein is in the cytoplasmic membrane of a white mutant strain of Chlamydomonas reinhardtiiHow to make a living from anaerobic ammonium oxidation.The ABCs of membrane transporters in health and disease (SLC series): introduction.Role of NH3 and NH4+ transporters in renal acid-base transport.Periplasmic vestibule plays an important role for solute recruitment, selectivity, and gating in the Rh/Amt/MEP superfamily.High-throughput genome sequencing of lichenizing fungi to assess gene loss in the ammonium transporter/ammonia permease gene family.Ammonium transport proteins with changes in one of the conserved pore histidines have different performance in ammonia and methylamine conduction.SNPs altering ammonium transport activity of human Rhesus factors characterized by a yeast-based functional assay.Multiple horizontal gene transfers of ammonium transporters/ammonia permeases from prokaryotes to eukaryotes: toward a new functional and evolutionary classification.Evolution of Electrogenic Ammonium Transporters (AMTs).The molecular basis of K+ exclusion by the Escherichia coli ammonium channel AmtB.Expression of the gas-transporting proteins, Rh B glycoprotein and Rh C glycoprotein, in the murine lung.The JAL antigen (RH48) is the result of a change in RHCE that encodes Arg114TrpGenetic evidence for an essential oscillation of transmembrane-spanning segment 5 in the Escherichia coli ammonium channel AmtB.Ion regulation in fish gills: recent progress in the cellular and molecular mechanisms.Characteristics of mammalian Rh glycoproteins (SLC42 transporters) and their role in acid-base transport.Identifying Potential Mechanisms Enabling Acidophily in the Ammonia-Oxidizing Archaeon "Candidatus Nitrosotalea devanaterra".Functional analysis of human RhCG: comparison with E. coli ammonium transporter reveals similarities in the pore and differences in the vestibule.The TORC1 effector kinase Npr1 fine tunes the inherent activity of the Mep2 ammonium transport protein.Distinct transport mechanisms in yeast ammonium transport/sensor proteins of the Mep/Amt/Rh family and impact on filamentation.Ammonia exposure affects the mRNA and protein expression levels of certain Rhesus glycoproteins in the gills of climbing perch.Retracted article: ammonium transport proteins from Archaeoglobus fulgidus.Ammonia Excretion in an Osmoregulatory Syncytium Is Facilitated by AeAmt2, a Novel Ammonia Transporter in Aedes aegypti Larvae.
P2860
Q21091152-D81F6399-2C0D-4E89-990F-D52284CB1122Q24314722-EFFC6346-58FF-4AFD-9902-3B840574004EQ24606200-A40FF3A4-37F6-4552-B5FD-C30B51790E82Q27301917-17456029-8018-4A90-B495-B6973BF924D5Q27675303-02D2EFF0-F2F8-49F0-8413-2049BD94E555Q27675936-3E01DA18-4712-4681-8837-52587272A23BQ28116783-93D3253B-289F-421F-B212-E2027CB72E0EQ28546489-917B66E6-14F3-4C06-9A5C-5F6A81E300A9Q33516305-97F11185-1436-4704-8F38-094BC5198559Q33600964-EF6DEDD5-D843-4A0A-AB50-A6ECEEB889F8Q33690889-57F50701-3E3E-44AE-9746-9AB89DDBB65BQ33919676-6B5AC5E4-9E09-44A6-AFE2-96132FEB34E9Q33988846-A320DBA2-4F3A-4222-A93C-933BA02B19E0Q34034634-1829862A-0AF7-4F8F-A503-30DE39FE65BDQ34333686-E8898DAB-C522-49D4-BDB2-A8298AAF0171Q34501903-1E2D1D21-FB41-4838-B395-5752E0F20BB4Q34652612-3372A048-837C-4B0F-8730-B1F294A0CA34Q34655469-393F6D79-03A0-4FB8-A3E7-2ACB7FB3658AQ34717677-F64DB465-F238-482A-90D3-89686BA9CD9EQ34963412-2F4FA1B5-0366-4837-89F7-8C67B9EF2C1BQ36058204-5069FE01-E008-45FC-8E36-8362B0E81793Q36747045-B93159C2-AA27-40F5-8D27-68123774B3DFQ36850227-16350AFE-B5D8-4D9D-B9D4-B9B7628DD469Q37264741-D2349CFD-E72E-4A88-B465-924DE076D884Q37372891-16E3CDCA-FADD-4E78-ADBA-9833F59012A6Q37454603-C9E93077-8F2D-4662-B29F-86F0F465AA22Q37859562-3909255B-B75F-4C81-ACE6-D3442C0B37C7Q38090796-17D8CC9C-D3EF-4F6E-9C36-782D7B5D0BC3Q38905695-B30D17D7-68A6-448E-898F-C4461B4B1C75Q39833561-0966D452-E4E7-434C-ACEC-82F9F9A038C6Q42427964-0B1027E0-1B1C-4E47-A45D-10A2DC93C970Q46570750-D2B6951B-6D2E-46D3-93AC-8C3C19DA9C0CQ47873047-3BADCDA2-9DC9-4F90-9645-1D5E6B066EDCQ48987947-C92D29CF-B01F-4DBF-B371-88009035DAD6Q52562674-6DB40CA6-E7FB-4C1B-84A9-06F22D851907
P2860
description
2007 nî lūn-bûn
@nan
2007 թուականի Դեկտեմբերին հրատարակուած գիտական յօդուած
@hyw
2007 թվականի դեկտեմբերին հրատարակված գիտական հոդված
@hy
2007年の論文
@ja
2007年論文
@yue
2007年論文
@zh-hant
2007年論文
@zh-hk
2007年論文
@zh-mo
2007年論文
@zh-tw
2007年论文
@wuu
name
Structure of the Nitrosomonas europaea Rh protein
@ast
Structure of the Nitrosomonas europaea Rh protein
@en
Structure of the Nitrosomonas europaea Rh protein
@nl
type
label
Structure of the Nitrosomonas europaea Rh protein
@ast
Structure of the Nitrosomonas europaea Rh protein
@en
Structure of the Nitrosomonas europaea Rh protein
@nl
prefLabel
Structure of the Nitrosomonas europaea Rh protein
@ast
Structure of the Nitrosomonas europaea Rh protein
@en
Structure of the Nitrosomonas europaea Rh protein
@nl
P2093
P2860
P3181
P356
P1476
Structure of the Nitrosomonas europaea Rh protein
@en
P2093
Hiep-Hoa T Nguyen
Michael K Chan
Sanjay Jayachandran
P2860
P304
P3181
P356
10.1073/PNAS.0709710104
P407
P577
2007-12-04T00:00:00Z