The acidic lumenal pH in the epididymis and vas deferens is largely generated by a bafilomycin-sensitive H-ATPase on the plasma membrane and intracellular vesicles of a population of specialized epithelial cells that resemble kidney collecting duct intercalated cells in many respects. This acidic pH plays a critical role in sperm maturation and helps maintain sperm in a quiescent state until ejaculation: defective acidification may impair reproductive function in pathologic conditions, while intervention to manipulate acidification male be used to control male fertility.
The aim of this proposal is to develop a thorough understanding of the regulatory mechanisms involved in this acidification process. The central hypothesis behind the proposed studies is that the differentiation and functional activity of these proton pumping cells is regulated physiologically, that vesicle recycling is involved in controlling the plasma membrane content of H-ATPase, and that transepithelia proton secretion involves parallel ion transporting proteins. A unique aspect of the proposed studies is the use of a multidisciplinary approach that will benefit greatly from the combined expertise of participants in the other projects of this PPG application. Cell and molecular biology, and immunocytochemistry will be combined with measurements of transepithelial ion flux using ion- specific vibrating probe technology, and single-cell spectrofluorimetric analysis, to identity active transporters in the intact epithelium. A wide variety of antibody and cDNA reagents are available for these studies, and a carbonic anhydrase II-deficient mouse model with potentially defective luminal acidification will also be examined.
Specific aims are: 1) To define the pathways of proton secretion in normal epididymis and vas deferens, and the parallel transport proteins (e.g., Na/H and anion exchangers; Na-HC03 and NaK/2C1 co-transporters) that are involved: 2) To define the cell biological and physiological regulatory mechanism(s) of H-ATPase recycling in the epididymis and vas deferens, including the role of the cytoskeleton, GTP-binding proteins, acid-base balance and hormones: 3) To follow the development of PP-rich cells and acidification capacity in excurrent ducts during postnatal maturation. Normal animals and carbonic- anhydrase-deficient mice will be used for these studies. These studies will provide important information on the poorly understood process of reproductive tract acidification, as well as exploiting a novel epithelial model to dissect and distinct intracellular vesicle recycling pathway.

Project Start
1998-04-01
Project End
1999-03-31
Budget Start
1997-10-01
Budget End
1998-09-30
Support Year
12
Fiscal Year
1998
Total Cost
Indirect Cost
Name
Massachusetts General Hospital
Department
Type
DUNS #
City
Boston
State
MA
Country
United States
Zip Code
02199
Li, Wei; Jin, William W; Tsuji, Kenji et al. (2017) Ezrin directly interacts with AQP2 and promotes its endocytosis. J Cell Sci 130:2914-2925
Arthur, Julian; Huang, Jianmin; Nomura, Naohiro et al. (2015) Characterization of the putative phosphorylation sites of the AQP2 C terminus and their role in AQP2 trafficking in LLC-PK1 cells. Am J Physiol Renal Physiol 309:F673-9
Rice, William L; Li, Wei; Mamuya, Fahmy et al. (2015) Polarized Trafficking of AQP2 Revealed in Three Dimensional Epithelial Culture. PLoS One 10:e0131719
Zhang, Ping L; Mashni, Joseph W; Sabbisetti, Venkata S et al. (2014) Urine kidney injury molecule-1: a potential non-invasive biomarker for patients with renal cell carcinoma. Int Urol Nephrol 46:379-88
Marshansky, Vladimir; Rubinstein, John L; GrĂ¼ber, Gerhard (2014) Eukaryotic V-ATPase: novel structural findings and functional insights. Biochim Biophys Acta 1837:857-79
Hosokawa, Hiroyuki; Dip, Phat Vinh; Merkulova, Maria et al. (2013) The N termini of a-subunit isoforms are involved in signaling between vacuolar H+-ATPase (V-ATPase) and cytohesin-2. J Biol Chem 288:5896-913
Roy, Jeremy W; Hill, Eric; Ruan, Ye Chun et al. (2013) Circulating aldosterone induces the apical accumulation of the proton pumping V-ATPase and increases proton secretion in clear cells in the caput epididymis. Am J Physiol Cell Physiol 305:C436-46
Breton, Sylvie; Brown, Dennis (2013) Regulation of luminal acidification by the V-ATPase. Physiology (Bethesda) 28:318-29
P?unescu, Teodor G; Lu, Hua A J; Russo, Leileata M et al. (2013) Vasopressin induces apical expression of caveolin in rat kidney collecting duct principal cells. Am J Physiol Renal Physiol 305:F1783-95
Feinstein, Timothy N; Yui, Naofumi; Webber, Matthew J et al. (2013) Noncanonical control of vasopressin receptor type 2 signaling by retromer and arrestin. J Biol Chem 288:27849-60

Showing the most recent 10 out of 278 publications