Additional file 1 of Clonorchis sinensis legumain promotes migration and invasion of cholangiocarcinoma cells via regulating tumor-related molecules

Additional file 1: Figure S1. Predicted secondary structure of proCslegumain. The predicted secondary structure represents proCslegumain. ProCslegumain shows a very similar structure as the templates, with almost the same helixes or sheets in the same positions. G = 3-turn helix (310 helix). I = 5-t...

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Hauptverfasser: Chu, Yanfei, Shi, Doufei, Wang, Nan, Ren, Lebin, Liu, Naiguo, Hu, Fengai, Meng, Wei, Hong, Sung-Jong, Bai, Xuelian
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creator Chu, Yanfei
Shi, Doufei
Wang, Nan
Ren, Lebin
Liu, Naiguo
Hu, Fengai
Meng, Wei
Hong, Sung-Jong
Bai, Xuelian
description Additional file 1: Figure S1. Predicted secondary structure of proCslegumain. The predicted secondary structure represents proCslegumain. ProCslegumain shows a very similar structure as the templates, with almost the same helixes or sheets in the same positions. G = 3-turn helix (310 helix). I = 5-turn helix (π helix). T = hydrogen-bonded turn. B = residue in isolated β-bridge. S = bend. Identical residues in the alignment are highlighted with a gray background.
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Predicted secondary structure of proCslegumain. The predicted secondary structure represents proCslegumain. ProCslegumain shows a very similar structure as the templates, with almost the same helixes or sheets in the same positions. G = 3-turn helix (310 helix). I = 5-turn helix (π helix). T = hydrogen-bonded turn. B = residue in isolated β-bridge. S = bend. 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Predicted secondary structure of proCslegumain. The predicted secondary structure represents proCslegumain. ProCslegumain shows a very similar structure as the templates, with almost the same helixes or sheets in the same positions. G = 3-turn helix (310 helix). I = 5-turn helix (π helix). T = hydrogen-bonded turn. B = residue in isolated β-bridge. S = bend. Identical residues in the alignment are highlighted with a gray background.</abstract><pub>figshare</pub><doi>10.6084/m9.figshare.22610347</doi><oa>free_for_read</oa></addata></record>
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subjects Biochemistry
Cancer
Cell Biology
Chemical Sciences not elsewhere classified
Developmental Biology
Molecular Biology
Science Policy
title Additional file 1 of Clonorchis sinensis legumain promotes migration and invasion of cholangiocarcinoma cells via regulating tumor-related molecules
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