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◆ PLANT PHYSIOLOGY2026-01-29· Cell wall

Expansin-like A binds to pectin via electrostatic forces and remodels the plant cell wall

She Men, Fen Zhao, Xiangnan Zhang, Zeyuan Guan, Jiawen Xu, Yuan Xue, Haozhe Tan, Xiao Chang, Guannan Zhao, Chunmiao Li, Zhonghua Liu, Xianlong Zhang, Ping Yin, Lili Tu

原始摘要(英文原文)· Original abstract
Expansins are pivotal cell wall-loosening proteins that facilitate turgor-driven extension of plant cell walls. Expansin-like A (EXLA) proteins represent a subfamily, but their interaction with polysaccharides remains poorly understood during primary cell wall growth, hindered by challenges in achieving active heterologous expression for in vitro analysis. Using an insect secretion-based expression system, we successfully expressed and purified EXLA proteins. Screening 8 different polysaccharides showed that EXLAs exhibit a preference for binding to negatively charged polygalacturonic acid (PGA) and rhamnogalacturonan I (RG-I), pivotal components of pectin in the primary cell wall matrix. The crystal structure of EXLA1 was resolved at 2.5 Å resolution, revealing 3 crucial positively charged surfaces for pectin electrostatic interaction, and mutating these basic amino acids to alanine significantly reduced the binding ability. Moreover, recombinant EXLA1 promoted the extension of heat-inactivated cucumber hypocotyl walls under acidic conditions, indicating its intrinsic wall-loosening activity in vitro. EXLA1 overexpression resulted in a remodeled cell wall structure, suggesting EXLAs affect cell wall growth. These findings unveil EXLAs function during cell wall development by binding pectin through electrostatic interactions.
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Expansin-like A binds to pectin via electrostatic forces and remodels the plant cell wall — 科研速览 Science Skim