Exploring a peripheral PIP2-binding site and its role in the alternative regulation of the TRP channel superfamily

Исследование периферического сайта связывания PIP2 и его роли в альтернативной регуляции суперсемейства TRP-каналов
L. Gonzalo Espinoza-Arcos, Mariela González‐Avendaño, Matías Zúñiga-Bustos, Ricardo A. Zamora, Ariela Vergara‐Jaque, Horacio Poblete
2025-07-30

K431A mutationPIP2-binding siteR432A mutationTRPV1peripheral PIP2-binding site
Phosphatidylinositol 4,5-bisphosphate (PIP2) is recognized as an essential modulator of transient receptor potential (TRP) channels. Specifically, it influences the vanilloid receptor I (TRPV1), a pain receptor activated by a wide range of stimuli, including the binding of phospholipids, such as PIP2. The primary PIP2-binding site in TRPV1 has been identified through advanced techniques, revealing that the PIP2 binds to a specific pocket composed of positively charged residues located predominantly within the proximal C-terminus region. Additionally, a conserved segment with positively charged amino acids, K431 and R432, situated at the beginning of TRPV1's S1 transmembrane domain, has attracted considerable attention from the TRP research community. To date, our knowledge of this site's function and the subsequent effects following PIP2 binding is still emerging. In this work, MD simulations were conducted using coarse-grained models to investigate the binding dynamics of PIP2 on both WT and various mutated forms of TRPV1 channels. Our findings indicate that the K431A and R432A mutations significantly reduce the frequency of PIP2 contacts, suggesting that these mutated residues are part of a "peripheral binding pocket." This pocket seems to play a crucial role in facilitating the entry of PIP2 to the TRPV1 channel's primary binding site. Furthermore, our research has shown that these highly conserved residues within the TRPV subfamily are also structurally conserved across other TRP subfamilies, such as TRPM and TRPC, a detail not evident from sequence alignment alone. Consequently, we propose the existence of a structurally conserved peripheral PIP2-binding site shared among the diverse members of the TRP family, which can be categorized into distinct subfamilies.
1
K431 and R432 form part of a peripheral PIP2-binding pocket that facilitates PIP2 access to TRPV1's primary binding site.
2
MD coarse-grained simulations show K431A and R432A mutations in TRPV1 significantly reduce PIP2 contact frequency.
3
Primary PIP2-binding site in TRPV1 is a pocket of positively charged residues predominantly in the proximal C-terminus.
4
Proposal: a structurally conserved peripheral PIP2-binding site exists across diverse TRP family members, potentially categorizing into distinct subfamilies.
5
Structural conservation of the peripheral positively charged segment (including K431/R432) is observed across TRPV, TRPM, and TRPC subfamilies despite limited sequence alignment evidence.

Peripheral PIP2-binding site on TRPV1 (and structurally conserved peripheral PIP2-binding site across TRP channel family)

Role and binding dynamics of the peripheral PIP2-binding site (including effects of K431A and R432A mutations) in facilitating PIP2 entry to the primary PIP2-binding pocket and its structural conservation across TRP subfamilies

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2025-07-30
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L. Gonzalo Espinoza-Arcos
Mariela González‐Avendaño
Matías Zúñiga-Bustos
Ricardo A. Zamora
Ariela Vergara‐Jaque
Horacio Poblete
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