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1. How does cellulosome composition influence deconstruction of lignocellulosic substrates in Clostridium (Ruminiclostridium) thermocellum DSM 1313?

2. Insights into the functionality and stability of designer cellulosomes at elevated temperatures.

3. Cellulosomal expansin: functionality and incorporation into the complex.

4. Structure of a family 3a carbohydrate-binding module from the cellulosomal scaffoldin CipA of Clostridium thermocellum with flanking linkers: implications for cellulosome structure.

5. BEHAVIOR AND SUPPORTIVE EVIDENCE OF A LARGE XYLANASE-CONTAINING MULTIENZYME COMPLEX OF TEPIDIMICROBIUM XYLANILYTICUM BT14.

6. STUDY OF ENZYMATIC HYDROLYSIS OF PRETREATED BIOMASS AT INCREASED SOLIDS LOADING.

7. Enhanced cellulose degradation by targeted integration of a cohesin-fused &bgr;-glucosidase into the Clostridium thermocellum cellulosome.

8. STUDY OF ENZYMATIC HYDROLYSIS OF MILD PRETREATED LIGNOCELLULOSIC BIOMASSES.

9. EFFECT OF CELLULOSE STRUCTURE ON ENZYMATIC HYDROLYSIS.

10. Engineering a reversible, high-affinity system for efficient protein purification based on the cohesin-dockerin interaction.

12. Nonproteolytic cleavage of aspartyl proline bonds in the cellulosomal scaffoldin subunit from Clostridium thermocellum.

13. Cellulase S (CelS) is synonymous with the major cellobiohydrolase (subunit S8) from the cellulosome of Clostridium thermocellum.

14. Unorthodox intrasubunit interactions in the cellulosome of Clostridium thermocellum.

16. Novel oligosaccharide constituents of the cellulase complex of <em>Bacteroides cellulosolvens</em>.

17. Primary structure of O-linked carbohydrate chains in the cellulosome of different <em> Clostridium thermocellum</em> strains.

18. Directed Evolution of Clostridium thermocellum β-Glucosidase A Towards Enhanced Thermostability.

19. Unraveling essential cellulosomal components of the (Pseudo)Bacteroides cellulosolvens reveals an extensive reservoir of novel catalytic enzymes.

20. Effects of cre1 modification in the white-rot fungus Pleurotus ostreatus PC9: altering substrate preference during biological pretreatment.

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