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Lecture Notes - Lecture 4, Developmental Biology, BioD104, UC Irvine

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Typed class notes covering lecture 4 in the Development Biology course (code BioD104) at University of California, Irvine. Made by a biology student taking said course over a summer session. Document comes with color-coded notes and textbook diagrams.

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Subido en
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2019/2020
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Lecture 4: Dorsal-Ventral Axis Specification & Abbreviation Key:
Vertebrate Body Plan b/c = because
b/w = between
Monday, August 12, 2019 10:29 AM
w/ = with
expt = experiment
• Mesoderm Migration during Gastrulation ex. = example
• Mesoderm cells migrates into the embryo -> Invagination
○ Mesoderm becomes NS, laying more on the ventral side of drosophila.
• D/V specification occurs during oogenesis.
• Nurse cell pumps protein into oocyte, which will become the embryo.
• Oocyte surrounded by follicle cells. Determines the anterior and posterior ends of oocyte. Also
responsible for establishment of DV gradient.
• Activation of Toll Receptor on the Ventral Side **Embryo is still a syncytial blastoderm at this time.**
• Spätzle (SPZ): ligand for the Toll receptor.
• Toll receptors are distributed throughout egg plasma membrane. Yet…
• Localized release of SPZ around ventral midline -> ensures receptors only activated on ventral side.
• Toll is activated in a "graded manner," w/ highest point of gradient on ventral side.
• Perivitelline membrane: a fluid that surrounds nuclei in embryo. Above molecules move around in this
space.
• Graded Nuclear Localization of the Morphogen "Dorsal"
• Morphogen Dorsal located in the nucleus on ventral side, yet in the cytoplasm on dorsal side.
○ KNOW Dorsal, Cactus, Spätzle and Toll.
• Specifying Ventral Side in drosophila:
○ Cactus-Dorsal complex is always located in the cytoplasm. However…
○ Once SPZ binds to Toll, their interaction induces kinase activities which phosphorylates Cactus
morphogen -> degrades Cactus in cytoplasm! When alone, Dorsal migrates to the nucleus. That is
why Dorsal is NOT present in the cytoplasm on the ventral side, but in the nuclei.
○ CONCLUSION: Toll signaling controls graded nuclear localization of Dorsal!
• Similar mechanisms are used to differentiate lymphocytes in mammals.
○ Ex. Dorsal: NF-kB
• The Dorsal protein provides positional information along the D/V axis.
• Patterning of the D/V axis controlled by maternal gene "Dorsal (dl)."
• REVIEW Dorsal protein is uniformly distributed evenly along the egg. Yet…
• In response to Toll signaling -> causes degradation of Cactus -> DI protein enters the embryo nuclei of
cells in a graded manner.
○ Highest concentration in ventral nuclei, lowest in the dorsal nuclei (all in cytoplasm).
• In the absence of Toll signaling -> the DI protein is bound to Cactus, which keeps DI in the cytoplasm.
• Dl encodes a transcription factor (Twist) and regulates target gene expression.
• Dorsal protein functions as a morphogen.
• In MT dorsal embryos, DI protein cannot enter the nuclei. -> Ventral side cannot be specified from the
Dorsal. Both sides become Dorsal (dorsalized).
• In MT cactus embryos, all DI protein enters nuclei. -> Dorsal side cannot be specified from the Ventral
side. Both sides become Ventral (ventralized).
• Dorsal as a Morphogen and Regulation of Region-specific Zygotic Gene Expression
○ KNOW twist and dpp genes.
• Zygotic Gene Expression along D/V Axis
• Dl (maternal gene->protein) binds to the regulatory regions of zygotic genes in a concentration-
dependent manner. -> Can activate or repress some zygotic genes.
• HIGH levels of Dl activate Twist.
• LOW levels of Dl activate noeuroectodermal genes like short gastrulation (Sog).
• Twist: TF that is expressed in the ventral midline; required for mesoderm induction and gastrulation.
Dorsal protein in nuclei needs to reach a certain threshold to activate twist gene.
• Decapentaplegic (dpp): growth factor apart of TFGB, and acts as a morphogen.
○ Dpp is repressed when DI protein is present, and activated when DI protein is NOT present. -> Dpp
is expressed in the nuclei on Dorsal side.
○ Dpp is secreted from the cell and is pumped into the Perivitelline membrane.
• A Gradient of Dpp Patterns the Dorsal Region.
• Sog gene is expressed in lower half sides of Ventral region -> Sog protein. Acts as an inhibitor…
• Sog binds to dpp -> prevents dpp from acting on receptor on cell surface -> Dpp becomes inactive in
presence of Sog. -> Sog regions are dpp-free.
• Causes a gradient of Dpp activity, highest concentration in the Dorsal region.
• In vertebrates dpp is homologous to BMP4, and Sog to vertebrate Chordin.
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I have a Biological Sciences degree from UC Irvine class of 2021. Most of my documents will be from courses I've taken during my time at UCI. No answers to exams or quizzes, just study guides and lecture notes.

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