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Joachim Rosenbusch

Explore the profile of Joachim Rosenbusch including associated specialties, affiliations and a list of published articles. Areas
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Articles 18
Citations 483
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Recent Articles
1.
Nguyen H, Sokpor G, Parichha A, Pham L, Saikhedkar N, Xie Y, et al.
Front Cell Dev Biol . 2022 Oct; 10:1011109. PMID: 36263009
Early forebrain patterning entails the correct regional designation of the neuroepithelium, and appropriate specification, generation, and distribution of neural cells during brain development. Specific signaling and transcription factors are known...
2.
Kerimoglu C, Pham L, Tonchev A, Sakib M, Xie Y, Sokpor G, et al.
Sci Adv . 2021 Sep; 7(38):eabc6792. PMID: 34524839
Increase in the size of human neocortex―acquired in evolution―accounts for the unique cognitive capacity of humans. This expansion reflects the evolutionarily enhanced proliferative ability of basal progenitors (BPs), including the...
3.
Sokpor G, Kerimoglu C, Nguyen H, Pham L, Rosenbusch J, Wagener R, et al.
Front Mol Neurosci . 2021 Jul; 14:687581. PMID: 34220450
Radial neuronal migration is a key neurodevelopmental event indispensable for proper cortical laminar organization. Cortical neurons mainly use glial fiber guides, cell adhesion dynamics, and cytoskeletal remodeling, among other discrete...
4.
Ulmke P, Sakib M, Ditte P, Sokpor G, Kerimoglu C, Pham L, et al.
Stem Cell Reports . 2021 Apr; 16(4):968-984. PMID: 33798452
Intermediate progenitor cells (IPCs) are neocortical neuronal precursors. Although IPCs play crucial roles in corticogenesis, their molecular features remain largely unknown. In this study, we aimed to characterize the molecular...
5.
Sokpor G, Rosenbusch J, Kunwar A, Rickmann M, Tuoc T, Rizzoli S, et al.
Neuroscience . 2021 Mar; 463:303-316. PMID: 33774122
Cortical morphogenesis entails several neurobiological events, including proliferation and differentiation of progenitors, migration of neuroblasts, and neuronal maturation leading to functional neural circuitry. These neurodevelopmental processes are delicately regulated by...
6.
Ulmke P, Xie Y, Sokpor G, Pham L, Shomroni O, Berulava T, et al.
Development . 2021 Jan; 148(3). PMID: 33462115
Fine-tuned gene expression is crucial for neurodevelopment. The gene expression program is tightly controlled at different levels, including RNA decay. N-methyladenosine (m6A) methylation-mediated degradation of RNA is essential for brain...
7.
Xie Y, Castro-Hernandez R, Sokpor G, Pham L, Narayanan R, Rosenbusch J, et al.
Mol Neurobiol . 2019 Apr; 56(11):7305-7320. PMID: 31020615
Chromatin remodeling factor BAF155 is an important regulator of many biological processes. As a core and scaffold subunit of the BAF (SWI/SNF-like) complex, BAF155 is capable of regulating the stability...
8.
Narayanan R, Pham L, Kerimoglu C, Watanabe T, Castro Hernandez R, Sokpor G, et al.
iScience . 2018 Sep; 4:109-126. PMID: 30240734
The abundance of basal progenitors (BPs), basal radial glia progenitors (bRGs) and basal intermediate progenitors (bIPs), in primate brain has been correlated to the high degree of cortical folding. Here...
9.
Nguyen H, Kerimoglu C, Pirouz M, Pham L, Kiszka K, Sokpor G, et al.
Stem Cell Reports . 2018 May; 10(6):1734-1750. PMID: 29779894
During early cortical development, neural stem cells (NSCs) divide symmetrically to expand the progenitor pool, whereas, in later stages, NSCs divide asymmetrically to self-renew and produce other cell types. The...
10.
Sokpor G, Castro-Hernandez R, Rosenbusch J, Staiger J, Tuoc T
Front Neurosci . 2018 Apr; 12:226. PMID: 29686607
The generation of individual neurons (neurogenesis) during cortical development occurs in discrete steps that are subtly regulated and orchestrated to ensure normal histogenesis and function of the cortex. Notably, various...