Transcriptional regulators and human-specific/primate-specific genes in neocortical neurogenesis

19Citations
Citations of this article
39Readers
Mendeley users who have this article in their library.

Abstract

During development, starting from a pool of pluripotent stem cells, tissue-specific genetic programs help to shape and develop functional organs. To understand the development of an organ and its disorders, it is important to understand the spatio-temporal dynamics of the gene expression profiles that occur during its development. Modifications in existing genes, the de-novo appearance of new genes, or, occasionally, even the loss of genes, can greatly affect the gene expression profile of any given tissue and contribute to the evolution of organs or of parts of organs. The neocortex is evolutionarily the most recent part of the brain, it is unique to mammals, and is the seat of our higher cognitive abilities. Progenitors that give rise to this tissue undergo sequential waves of differentiation to produce the complete sets of neurons and glial cells that make up a functional neocortex. We will review herein our understanding of the transcriptional regulators that control the neural precursor cells (NPCs) during the generation of the most abundant class of neocortical neurons, the glutametergic neurons. In addition, we will discuss the roles of recently-identified human-and primate-specific genes in promoting neurogenesis, leading to neocortical expansion.

Cite

CITATION STYLE

APA

Vaid, S., & Huttner, W. B. (2020, July 1). Transcriptional regulators and human-specific/primate-specific genes in neocortical neurogenesis. International Journal of Molecular Sciences. MDPI AG. https://doi.org/10.3390/ijms21134614

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free