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PMID: 18369318 Published · ppublish English Comparative Study Journal Article Research Support, N.I.H., Extramural Research Support, Non-U.S. Gov't

A novel mode of TRPML3 regulation by extracytosolic pH absent in the varitint-waddler phenotype.

The EMBO journal ·Vol. 27 ·No. 8 ·2008-04-23 ·Pages 1197-205

Kim HJ, Li Q, Tjon-Kon-Sang S, So I, Kiselyov K, Soyombo AA, Muallem S

Abstract

TRPML3 belongs to the TRPML subfamily of the transient receptor potential (TRP) channels. The A419P mutation in TRPML3 causes the varitint-waddler phenotype as a result of gain-of-function mutation (GOF). Regulation of the channels and the mechanism by which the A419P mutation leads to GOF are not known. We report here that TRPML3 is a Ca(2+)-permeable channel with a unique form of regulation by extracytosolic (luminal) H(+) (H(+)(e-cyto)). Regulation by H(+)(e-cyto) is mediated by a string of three histidines (H252, H273, H283) in the large extracytosolic loop between transmembrane domains (TMD) 1 and 2. Each of the histidines has a unique role, whereby H252 and H273 retard access of H(+)(e-cyto) to the inhibitory H283. Notably, the H283A mutation has the same phenotype as A419P and locks the channel in an open state, whereas the H283R mutation inactivates the channel. Accordingly, A419P eliminates regulation of TRPML3 by H(+)(e-cyto), and confers full activation to TRPML3(H283R). Activation of TRPML3 and regulation by H(+)(e-cyto) are altered by both the alpha-helix-destabilizing A419G and the alpha-helix-favouring A419M and A419K. These findings suggest that regulation of TRPML3 by H(+)(e-cyto) is due to an effect of the large extracytosolic loop on the orientation of fifth TMD and thus pore opening and show that the GOF of TRPML3(A419P) is due to disruption of this communication.

MeSH Terms
Amino Acid Substitution/genetics Calcium/metabolism Cell Line Cytosol/physiology Humans Hydrogen-Ion Concentration Mucolipidoses/genetics,metabolism Phenotype Protein Structure, Tertiary Transient Receptor Potential Channels/chemistry,genetics,metabolism
Chemicals
MCOLN3 protein, human Transient Receptor Potential Channels Calcium
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Kim Hyun Jin
Department of Physiology, University of Texas Southwestern Medical Center, Dallas, TX 75390-9040, USA.
Li Qin
Tjon-Kon-Sang Sandra
So Insuk
Kiselyov Kirill
Soyombo Abigail A
Muallem Shmuel
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Article Info
Journal
The EMBO journal
Abbr.
EMBO J
ISSN
1460-2075
Published
2008-04-23
Epub
2008-00-27
Pages
1197-205
Language
English
Region
England
NLM ID
8208664
PMCID
PMC2367400
Subset
IM
Grants
NIDCR NIH HHS · R01 DE012309 · United States
NIDDK NIH HHS · R01 DK038938 · United States
NIDCR NIH HHS · DE12309 · United States
NIDDK NIH HHS · DK38938 · United States
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