Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone mineralization by regulating post-Golgi protein transport and glycosylation

A Ashikov, N Abu Bakar, XY Wen… - Human molecular …, 2018 - academic.oup.com
Genomics methodologies have significantly improved elucidation of Mendelian disorders.
The combination with high-throughput functional–omics technologies potentiates the …

[引用][C] Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone mineralization by regulating post-Golgi protein transport and glycosylation

A Ashikov, N Abu Bakar, XY Wen, M Niemeijer… - 2018 - lilloa.univ-lille.fr
Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone
mineralization by regulating post-Golgi protein transport and glycosylation Toggle …

Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone mineralization by regulating post-Golgi protein transport and glycosylation

CDG Grp, A Ashikov, NA Bakar, XY Wen… - Human Molecular …, 2018 - research.rug.nl
Genomics methodologies have significantly improved elucidation of Mendelian disorders.
The combination with high-throughput functional-omics technologies potentiates the …

Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone mineralization by regulating post-Golgi protein transport and glycosylation

A Ashikov, N Abu Bakar, XY Wen, M Niemeijer… - 2018 - agris.fao.org
Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone
mineralization by regulating post-Golgi protein transport and glycosylation Food and Agriculture …

Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone mineralization by regulating post-Golgi protein transport and glycosylation

A Ashikov, NA Bakar, XY Wen… - Human molecular …, 2018 - pubmed.ncbi.nlm.nih.gov
Genomics methodologies have significantly improved elucidation of Mendelian disorders.
The combination with high-throughput functional-omics technologies potentiates the …

[引用][C] Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone mineralization by regulating post-Golgi protein transport and glycosylation

AM Ashikov, NB AbuBakar, XY Wen, M Niemeijer… - 2018 - repository.ubn.ru.nl
Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone mineralization
by regulating post-Golgi protein transport and glycosylation Toggle navigation Radboud Repository …

[PDF][PDF] Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone mineralization by regulating post-Golgi protein transport and glycosylation

A Ashikov, NA Bakar, XY Wen, M Niemeijer… - Human Molecular …, 2018 - academia.edu
Genomics methodologies have significantly improved elucidation of Mendelian disorders.
The combination with highthroughput functional–omics technologies potentiates the …

[PDF][PDF] Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone mineralization by regulating post-Golgi protein transport and glycosylation

A Ashikov, NA Bakar, XY Wen… - Human Molecular …, 2018 - researchgate.net
Genomics methodologies have significantly improved elucidation of Mendelian disorders.
The combination with highthroughput functional–omics technologies potentiates the …

Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone mineralization by regulating post-Golgi protein transport and glycosylation

A Ashikov, NA Bakar, XY Wen, M Niemeijer… - Human Molecular …, 2018 - hal.science
Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone
mineralization by regulating post-Golgi protein transport and glycosylation - Archive ouverte HAL …

Integrating glycomics and genomics uncovers SLC10A7 as essential factor for bone mineralization by regulating post-Golgi protein transport and glycosylation.

A Ashikov, NA Bakar, XY Wen… - Human Molecular …, 2018 - search.ebscohost.com
Genomics methodologies have significantly improved elucidation of Mendelian disorders.
The combination with high-throughput functional–omics technologies potentiates the …