Hoppa till huvudinnehållet
Till KTH:s startsida Till KTH:s startsida

Publications

2018

21. Reichenbach T, Kalyani D, Gandini R, Svartström O, Aspeborg H, Divne C. Structural and biochemical characterization of the Cutibacterium acnes exo-β-1,4-mannosidase that targets the N-glycan core of host glycoproteins. PLoS One. 2018 Sep 27;13(9):e0204703 doi: 10.1371/journal.pone.0204703

2017

20. Ninety-nine de novo assembled genomes from the moose (Alces alces) rumen microbiome provide new insights into microbial plant biomass degradation. Svartström O, Alneberg J, Terrapon N, Lombard V, de Bruijn I, Malmsten J, Dalin A-M, Muller E.E.L, Shah P, Wilmes P, Henrissat B, Aspeborg H, Andersson A.F. ISME J. 2017 Nov;11, 2538–2551 doi:10.1038/ismej.2017.108

2015

19. Biochemical characterization of the novel endo--mannanase AtMan5-2 from Arabidopsis thaliana. Wang Y, Azhar S, Gandini R, Divne C, Ezcurra I, Aspeborg H. Plant Science 2015 Dec;241:151-163 doi:10.1016/j.plantsci.2015.10.002

2014

18. Enzymatic characterization of a glycoside hydrolase family 5 subfamily 7 (GH5_7) mannanase from Arabidopsis thaliana. Wang Y, Vilaplana F, Brumer H, Aspeborg H. Planta. 2014 Mar;239(3):653-65 DOI:10.1007/s00425-013-2005-y

2013

17. Metagenomic de novo assembly of an aquatic representative of the verrucomicrobial class Spartobacteria, Herlemann D.P.R, Lundin D, Labrenz M, Jürgens K, Zheng Z, Aspeborg H, Andersson A.F. MBio. 2013 May 28;4(3):e00569-12 doi:10.1128/mBio.00569-12

2012

16. Evolution, substrate specificity and subfamily classification of glycoside hydrolase family 5 (GH5). Aspeborg H, Coutinho PM, Wang Y, Brumer H, Henrissat B. BMC Evolutionary Biology 2012, 12:186 DOI:10.1186/1471-2148-12-186

2011

15. An AC-type element mediates transactivation of secondary cell wall carbohydrate-active enzymes by PttMYB021, the Populus MYB46 orthologue. Ezcurra I, Johansson C, Tamizhselvan P, Winzell A, Aspeborg H, BMC Proceedings 2011 5 (Suppl 7):O40.doi:10.1186/1753-6561-5-S7-O40

2010

14. Vegetabile Material, Plants and a Method of Producing a Plant Having Altered Lignin Properties. Aspeborg H, Bhalerao R, Hertzberg M, Johansson K, Johnsson P, Karlsson A, Sandberg G, Schrader J, Sundberg B, Teeri T.T, Trygg J, Wallbaecks L. Patent Application Number WO2010062240-A1

13.Biochemical characterization of family 43 glycosyltransferases in the Populus xylem: challenges and prospects. Winzell A, Guerriero G, Aspeborg H, Wang Y, Rajangam A.S., Teeri T.T, Ezcurra I. Plant Biotechnology 2010 27:283-288

12. Conserved CA-rich motifs in gene promoters of PtxtMYB021-responsive secondary cell wall carbohydrate-active enzymes in Populus. Winzell A, Aspeborg H, Wang Y and Ezcurra I. Biochem Biophys Res Commun. 2010 Apr 9;394(3):848-53 DOI:10.1016/j.bbrc.2010.03.10

2008

11. MAP20, a microtubule-associated protein in the secondary cell walls of hybrid aspen, is a target of the cellulose synthesis inhibitor 2,6-dichlorobenzonitrile. Rajangam A.S, Kumar M, Aspeborg H, Guerriero G, Arvestad L, Pansri P, Brown C.J, Hober S, Blomqvist K, Divne C, Ezcurra I, Mellerowicz E, Sundberg B, Bulone V, Teeri T.T. Plant Physiol. 2008 Nov;148(3):1283-94 DOI:10.1104/pp.108.121913

2007

10. Cellulose Biosynthesis in forest trees. Blomqvist K, Djerbi S, Aspeborg H, Teeri TT. Book chapter in Cellulose: Molecular and Structural Biology - Selected Articles on the Synthesis, Structure, and Applications of Cellulose 2007. eds Brown Jr R.M, Saxena I,M. Springer, Netherlands, pp 85-106 DOI:10.1007/978-1-4020-5380-1_6

9. Genomic-assisted identification of genes involved in secondary growth in Arabidopsis utilising transcript profiling of poplar wood-forming tissues. Ubeda-Tomas S, Edvardsson E, Eland C, Kumar Singh S, Zadik D, Aspeborg H, Gorzsàs A, Teeri T. T, Sundberg B, Persson P, Bennett M, Marchant A. Physiologia Plantarum. 2007 129:415-428 DOI:10.1111/j.1399-3054.2006.00817.x

2006

8. Poplar Carbohydrate Active Enzymes (CAZymes). Gene identification and expression analyses. Geisler-Lee J, Geisler M, Coutinho P, Segerman B, Nishikubo N, Takahashi J, Aspeborg H, Djerbi S, Master E, Andersson-Gunnerås S, Sundberg B, Karpinski S, Teeri T. T, Kleczkowski L, Henrissat B, Mellerowicz E. Plant Physiol. 2006 Mar;140(3):946-62 DOI:10.1104/pp.105.072652

2005

7. Carbohydrate-active enzymes involved in the secondary cell wall biogenesis in hybrid aspen. Aspeborg H, Schrader J, Coutinho PM, Stam M, Kallas A, Djerbi S, Nilsson P, Denman S, Amini B, Sterky F, Master E, Sandberg G, Mellerowicz E, Sundberg B, Henrissat B, Teeri TT. Plant Physiol. 2005 Mar;137(3):983-97 DOI:10.1104/pp.104.055087

2004

6. A transcriptional timetable of autumn senescence. Andersson A, Keskitalo J, Sjödin A, Bhalerao R, Sterky F, Wissel K, Tandre K, Aspeborg H, Moyle R, Ohmiya Y, Bhalerao R, Brunner A, Gustafsson P, Karlsson J, Lundeberg J, Nilsson O, Sandberg G, Strauss S, Sundberg B, Uhlén M, Jansson S, Nilsson P. Genome Biol. 2004;5(4):R24. Epub 2004 Mar 1 http://genomebiology.com/2004/5/4/R24

5. Identification and expression analysis of genes encoding putative cellulose synthases (CesA) in the hybrid aspen, Populus tremula (L.) x P. tremuloides (Michx.). Djerbi S, Aspeborg H, Nilsson P, Sundberg B, Mellerowicz E, Blomqvist K, Teeri, TT. Cellulose 2004 Sep-Dec; 11(3-4): 301-312. DOI:10.1023/B:CELL.0000046408.84510.06

2003

4. Changes in gene expression in the wood-forming tissue of transgenic hybrid aspen with increased secondary growth. Israelsson M, Eriksson ME, Hertzberg M, Aspeborg H, Nilsson P, Moritz T. Plant Mol Biol. 2003 Jul; 52(4): 893-903. DOI:10.1023/A:1025097410445

3. Functional Genomics of Wood Formation in Hybrid Aspen. Aspeborg H, Blomqvist K, Denman S, Hertzberg M, Ohlsson A, Berglund T, Sandberg G, Lundeberg J, Sterky F, Teeri T.T, Nilsson P. In Plant Biotechnology 2002 and Beyond - Proceedings of the 10th IAPTC&B Congress, Orlando, Florida , USA. ed Vasil I.K Springer summary

2001

2. A transcriptional roadmap to wood formation. Hertzberg M¹, Aspeborg H¹, Schrader J, Andersson A, Erlandsson R, Blomqvist K, Bhalerao R, Uhlen M, Teeri TT, Lundeberg J, Sundberg B, Nilsson P, Sandberg G. Proc Natl Acad Sci U S A. 2001 Dec 4;98(25):14732-7. (¹ M.H. och H.A. contributed equally to this work) DOI:10.1073/pnas.261293398

1. cDNA microarray analysis of small plant tissue samples using a cDNA tag target amplification protocol. Hertzberg M, Sievertzon M, Aspeborg H, Nilsson P, Sandberg G, Lundeberg J. Plant J. 2001 5:585-591. DOI:10.1046/j.1365-313x.2001.00972.x

 


Profilbild av Henrik Aspeborg