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  5. Mapping of a Substrate Binding Site in the Protein Disulfide Isomerase-related Chaperone Wind Based on Protein Function and Crystal Structure

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Article
English
2004

Mapping of a Substrate Binding Site in the Protein Disulfide Isomerase-related Chaperone Wind Based on Protein Function and Crystal Structure

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English
2004
Journal of Biological Chemistry
Vol 279 (38)
DOI: 10.1074/jbc.m406839200

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In Memory: G.M. Sheldrick (1942–2025)
In Memory: G.M. Sheldrick (1942–2025)

University of Gottingen

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K. Barnewitz
Chaoshe Guo
Madhumati Sevvana
+4 more

Abstract

The protein disulfide isomerase (PDI)-related protein Wind is essential in Drosophila melanogaster, and is required for correct targeting of Pipe, an essential Golgi transmembrane 2-O-sulfotransferase. Apart from a thioredoxin fold domain present in all PDI proteins, Wind also has a unique C-terminal D-domain found only in PDI-D proteins. Here, we show that Pipe processing requires dimeric Wind, which interacts directly with the soluble domain of Pipe in vitro, and we map an essential substrate binding site in Wind to the vicinity of an exposed cluster of tyrosines within the thioredoxin fold domain. In vitro, binding occurs to multiple sites within the Pipe polypeptide and shows specificity for two consecutive aromatic residues. A second site in Wind, formed by a cluster of residues within the D-domain, is likewise required for substrate processing. This domain, expressed separately, impairs Pipe processing by the full-length Wind protein, indicating competitive binding to substrate. Our data represent the most accurate map of a peptide binding site in a PDI-related protein available to date and directly show peptide specificity for a naturally occurring substrate.

How to cite this publication

K. Barnewitz, Chaoshe Guo, Madhumati Sevvana, Qingjun Ma, In Memory: G.M. Sheldrick (1942–2025), Hans‐Dieter Söling, David M. Ferrari (2004). Mapping of a Substrate Binding Site in the Protein Disulfide Isomerase-related Chaperone Wind Based on Protein Function and Crystal Structure. Journal of Biological Chemistry, 279(38), pp. 39829-39837, DOI: 10.1074/jbc.m406839200.

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Publication Details

Type

Article

Year

2004

Authors

7

Datasets

0

Total Files

0

Language

English

Journal

Journal of Biological Chemistry

DOI

10.1074/jbc.m406839200

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