1. Academic Validation
  2. Domain architecture of vasohibins required for their chaperone-dependent unconventional extracellular release

Domain architecture of vasohibins required for their chaperone-dependent unconventional extracellular release

  • Protein Sci. 2017 Mar;26(3):452-463. doi: 10.1002/pro.3089.
Tetsuya Kadonosono 1 Wanaporn Yimchuen 1 Takuya Tsubaki 1 Tadashi Shiozawa 1 Yasuhiro Suzuki 2 Takahiro Kuchimaru 1 Yasufumi Sato 2 Shinae Kizaka-Kondoh 1
Affiliations

Affiliations

  • 1 Department of Life Science and Technology, School of Life Science and Technology, Tokyo Institute of Technology, Yokohama, 226-8501, Japan.
  • 2 Department of Vascular Biology, Institute of Development, Aging, and Cancer, Tohoku University, Sendai, 980-8575, Japan.
Abstract

Vasohibins (VASH1 and VASH2) are recently identified regulators of angiogenesis and Cancer cell functions. They are secreted proteins without any classical secretion signal sequences, and are thought to be secreted instead via an unconventional protein secretion (UPS) pathway in a small vasohibin-binding protein (SVBP)-dependent manner. However, the precise mechanism of SVBP-dependent UPS is poorly understood. In this study, we identified a novel UPS regulatory system in which essential domain architecture (VASH-PS) of VASHs, comprising regions VASH191-180 and VASH280-169 , regulate the cytosolic punctate structure formation in the absence of SVBP. We also demonstrate that SVBP form a complex with VASH1 through the VASH1274-282 (SIa), VASH1139-144 (SIb), and VASH1133-137 (SIc), leading to the dispersion in the cytosol and extracellular release of VASH1. The amino acid sequences of VASH-SIa and VASH-PS, containing SIb and SIc, are highly conserved among VASH family members in vertebrates, suggesting that SVBP-dependent UPS may be common within the VASH family. This novel UPS regulatory system may open up new avenues for understanding fundamental protein secretion in vertebrates.

Keywords

molecular chaperon; punctate structure formation; unconventional protein secretion; vasohibins.

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