Kim Hyun Jin, Li Qin, Tjon-Kon-Sang Sandra, So Insuk, Kiselyov Kirill, Muallem Shmuel
Department of Physiology, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
J Biol Chem. 2007 Dec 14;282(50):36138-42. doi: 10.1074/jbc.C700190200. Epub 2007 Oct 25.
TRPML3 is a member of the TRPML subfamily of the transient receptor potential cation channel superfamily. The TRPML3(A419P) mutation causes a severe form, whereas the TRPML3(I362T/A419P) mutation results in a mild form of the varitint-waddler phenotype. The channel properties of TRPML3 and how the mutations cause each phenotype are not known. In this study, we report the first channel properties of TRPML3 as a strongly inward rectifying cation channel with a novel regulation by extracytosolic Na+. Preincubating the extracytosolic face of TRPML3 in Na+-free medium is required for channel activation, but then the channel slowly inactivates. The A419P mutation locks the channel in an open unregulated state. Similar gain of function was observed with the A419G mutation, which, like A419P, is expected to destabilize the alpha-helical fifth transmembrane domain of TRPML3. The I362T mutation results in an inactive channel, but the channel properties of TRPML3(I362T/A419P) are similar to those of TRPML3(A419P). However, the surface expression and current density of TRPML3(I362T/A419P) are lower than those of TRPML3(A419P). The A419P mutation also affects channel glycosylation and causes massive cell death. These findings show that the varitint-waddler phenotype is due to a gain of function of TRPML3(A419P) that is reduced by the TRPML3(I362T/A419P) mutant, resulting in a milder phenotype.
TRPML3是瞬时受体电位阳离子通道超家族中TRPML亚家族的一员。TRPML3(A419P)突变会导致严重的表型,而TRPML3(I362T/A419P)突变则导致较轻的瓦丁特-沃德勒(varitint-waddler)表型。TRPML3的通道特性以及这些突变如何导致每种表型尚不清楚。在本研究中,我们报告了TRPML3作为一种强内向整流阳离子通道的首个通道特性,其受到胞外Na+的新型调控。通道激活需要在无Na+的培养基中预孵育TRPML3的胞外表面,但随后通道会缓慢失活。A419P突变使通道锁定在开放的非调控状态。A419G突变也观察到了类似的功能获得,与A419P一样,预计该突变会使TRPML3的α-螺旋第五跨膜结构域不稳定。I362T突变导致通道失活,但TRPML3(I362T/A419P)的通道特性与TRPML3(A419P)相似。然而,TRPML3(I362T/A419P)的表面表达和电流密度低于TRPML3(A419P)。A419P突变还会影响通道糖基化并导致大量细胞死亡。这些发现表明,瓦丁特-沃德勒表型是由于TRPML3(A419P)的功能获得,而TRPML3(I362T/A419P)突变体使其功能获得减少,从而导致较温和的表型。